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1

Johnson County REMC - Residential Energy Efficiency Rebate Program  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Johnson County REMC - Residential Energy Efficiency Rebate Program Johnson County REMC - Residential Energy Efficiency Rebate Program (Indiana) Johnson County REMC - Residential Energy Efficiency Rebate Program (Indiana) < Back Eligibility Residential Savings Category Heating & Cooling Commercial Heating & Cooling Cooling Heat Pumps Appliances & Electronics Water Heating Program Info State Indiana Program Type Utility Rebate Program Rebate Amount Air Source Heat Pumps: $200 - $400 Geothermal Heat Pumps: $500 - $700 Water Heaters: $50 Heat Pump Water Heater: $200 - $500 Central Air Conditioning: $100 Johnson County Rural Electric Membership Cooperative offers rebates to residential customers who install or replace new water heating and HVAC equipment. Rebates are available on the purchase and installation of air source heat pumps, geothermal heat pumps, water heaters, heat pump water

2

Johnson County REMC - Commercial Energy Efficiency Rebate Program (Indiana)  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Johnson County REMC - Commercial Energy Efficiency Rebate Program Johnson County REMC - Commercial Energy Efficiency Rebate Program (Indiana) Johnson County REMC - Commercial Energy Efficiency Rebate Program (Indiana) < Back Eligibility Commercial Industrial Savings Category Heating & Cooling Commercial Heating & Cooling Cooling Heat Pumps Appliances & Electronics Commercial Lighting Lighting Manufacturing Maximum Rebate Pre-approval required for payments greater than $1,000 Program Info State Indiana Program Type Utility Rebate Program Rebate Amount T5/T8 Lamps with Electronic Ballasts: $8 - $18 T8 Lamps: $0.75/lamp High Bay Fluorescent Fixtures with Electronic Ballasts: $50 - $125 Hardwired/Modular CFL Fixtures: $8 - $25 Ceramic Metal Halide Accent/Directional Lighting: $20 - $50 Pulse Start Metal Halide Fixtures: $25 - $65

3

EIS-0444: Texas Clean Energy Project (TCEP), Ector County, Texas |  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

44: Texas Clean Energy Project (TCEP), Ector County, Texas 44: Texas Clean Energy Project (TCEP), Ector County, Texas EIS-0444: Texas Clean Energy Project (TCEP), Ector County, Texas Overview The Department of Energy proposes to provide approximately $450 million to Summit Texas Clean Energy, LLC for the proposed Texas Clean Energy Project. The Project would use coal-based integrated gasification combined-cycle technology to generate electricity and capture carbon dioxide for use in enhanced oil recovery and sequestration. The plant would generate 400 MW (gross) of electricity, of which 130-213 MW would be provided to the power grid. It would also produce marketable urea, argon, and sulfuric acid. Public Comment Opportunities No public comment opportunities available at this time. Documents Available for Download

4

Johnson County Rural E M C | Open Energy Information  

Open Energy Info (EERE)

Johnson County Rural E M C Johnson County Rural E M C Place Indiana Utility Id 9778 Utility Location Yes Ownership C NERC Location RFC NERC RFC Yes ISO MISO Yes Activity Distribution Yes References EIA Form EIA-861 Final Data File for 2010 - File1_a[1] LinkedIn Connections CrunchBase Profile No CrunchBase profile. Create one now! This article is a stub. You can help OpenEI by expanding it. Utility Rate Schedules Grid-background.png Grain Dryer Service Commercial Large Power Service Industrial Large Power Time of Use Industrial Multi-Phase Commercial Service Commercial Net Metering Sevice Residential Outdoor Lighting: STN, Cobra Head, High Pressure Sodium, 400W Lighting Outdoor Lighting: STN, Directional Flood, Mercury Vapor / Metal Halide, 1000W Lighting Outdoor Lighting: STN, Directional Flood, Mercury Vapor / Metal Halide,

5

Biostratigraphy of Jonah quadrangle, Williamson County, Texas.  

E-Print Network (OSTI)

??This paper presents a zonation of the Austin chalk and the Burditt marl, divisions of the Austin group in the Jonah quadrangle, Williamson County, Texas. (more)

Marks, Edward, 1926-

2011-01-01T23:59:59.000Z

6

Environmental assessment: Deaf Smith County site, Texas  

SciTech Connect

In February 1983, the US Department of Energy (DOE) identified a location in Deaf Smith County, Texas, as one of nine potentially acceptable sites for a mined geologic repository for spent nuclear fuel and high-level radioactive waste. To determine their suitability, the Deaf Smith County site and the eight other potentially sites have been evaluated in accordance with the DOE's General Guidelines for the Recommendation of Sites for the Nuclear Waste Repositories. The Deaf Smith County site is in the Permian Basin, which is one of five distinct geohydrologic settings considered for the first repository. On the basis of the evaluations reported in this EA, the DOE has found that the Deaf Smith County site is not disqualified under the guidelines. On the basis of these findings, the DOE is nominating the Deaf Smith County site as one of the five sites suitable for characterization. 591 refs., 147 figs., 173 tabs.

1986-05-01T23:59:59.000Z

7

Bee County, Texas ASHRAE 169-2006 Climate Zone | Open Energy...  

Open Energy Info (EERE)

Search Page Edit History Facebook icon Twitter icon Bee County, Texas ASHRAE 169-2006 Climate Zone Jump to: navigation, search County Climate Zone Place Bee County, Texas...

8

Armstrong County, Texas ASHRAE 169-2006 Climate Zone | Open Energy...  

Open Energy Info (EERE)

Armstrong County, Texas ASHRAE 169-2006 Climate Zone Jump to: navigation, search County Climate Zone Place Armstrong County, Texas ASHRAE Standard ASHRAE 169-2006 Climate Zone...

9

Environmental assessment: Deaf Smith County site, Texas  

Science Conference Proceedings (OSTI)

In February 1983, the US Department of Energy (DOE) identified a location in Deaf Smith County, Texas, as one of the nine potentially acceptable sites for mined geologic repository for spent nuclear fuel and high-level radioactive waste. To determine their suitability, the Deaf Smith County site and eight other potentially acceptable sites have been evaluated in accordance with the DOE's General Guidelines for the Recommendation of Sites for the Nuclear Waste Repositories. The Deaf Smith County site is in the Permian Basin, which is one of five distinct geohydrologic settings considered for the first repository. On the basis of the evaluations reported in this EA, the DOE has found that the Deaf Smith County site is not disqualified under the guidelines.

Not Available

1986-05-01T23:59:59.000Z

10

25September 2011 Water Quality Education for Hood County, Texas  

E-Print Network (OSTI)

25September 2011 2010 Water Quality Education for Hood County, Texas Federal Initiative Accomplishments Lead Agency Texas AgriLife Extension Service Partners Texas AgriLife Research; U.S. Environmental Protection Agency; Brazos River Authority; Texas Commission on Environmental Quality Federal Funding USDA

11

Crosby County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Crosby County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 33.5500004, -101.2523792 Loading map... "minzoom":false,"mappingservice":...

12

BETWEEN RANDALL COUNTY, TEXAS AND 'I'HE UNITED STATES DEPARTMENT...  

NLE Websites -- All DOE Office Websites (Extended Search)

BETWEEN RANDALL COUNTY, TEXAS AND - 'I'HE UNITED STATES DEPARTMENT OF ENEKGY This Memorandum of Understanding (hereinslfier callcd "MOU") is between Randall County. Texas,...

13

Feasibility Study of Economics and Performance of Solar Photovoltaics at Johnson County Landfill  

NLE Websites -- All DOE Office Websites (Extended Search)

Johnson Johnson County Landfill James Salasovich and Gail Mosey Technical Report NREL/TP-6A20-53186 January 2012 NREL is a national laboratory of the U.S. Department of Energy, Office of Energy Efficiency & Renewable Energy, operated by the Alliance for Sustainable Energy, LLC. National Renewable Energy Laboratory 1617 Cole Boulevard Golden, Colorado 80401 303-275-3000 * www.nrel.gov Contract No. DE-AC36-08GO28308 Feasibility Study of Economics and Performance of Solar Photovoltaics at Johnson County Landfill James Salasovich and Gail Mosey Prepared under Task No. IGST.1100 Technical Report NREL/TP-6A20-53186 January 2012 NOTICE This report was prepared as an account of work sponsored by an agency of the United States government.

14

Johnson County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

7.3516558° 7.3516558° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":32.4133566,"lon":-97.3516558,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

15

EIS-0487: Freeport LNG Liquefaction Project, Brazoria County, Texas |  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

87: Freeport LNG Liquefaction Project, Brazoria County, Texas 87: Freeport LNG Liquefaction Project, Brazoria County, Texas EIS-0487: Freeport LNG Liquefaction Project, Brazoria County, Texas SUMMARY Federal Energy Regulatory Commission (FERC) is preparing an EIS, with DOE as a cooperating agency, to analyze the potential environmental impacts of a proposal to construct and operate the Freeport Liquefied Natural Gas (LNG) Liquefaction Project, which would expand an existing LNG import terminal on Quintana Island in Brazoria County, Texas, to enable the terminal to liquefy and export the LNG. PUBLIC COMMENT OPPORTUNITIES None available at this time. DOCUMENTS AVAILABLE FOR DOWNLOAD July 25, 2012 EIS-0487: Notice of Intent to Prepare an Environmental Impact Statement Freeport LNG Liquefaction Project, Brazoria County, Texas

16

Gaines County Solid Waste Management Act (Texas) | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Gaines County Solid Waste Management Act (Texas) Gaines County Solid Waste Management Act (Texas) Gaines County Solid Waste Management Act (Texas) < Back Eligibility Commercial Construction Industrial Investor-Owned Utility Local Government Municipal/Public Utility Rural Electric Cooperative Tribal Government Utility Program Info State Texas Program Type Environmental Regulations Provider Gaines County Solid Waste Management District This Act establishes the Gaines County Solid Waste Management District, a governmental body to develop and carry out a regional water quality protection program through solid waste management and regulation of waste disposal. The District has the power to prepare, adopt plans for, purchase, obtain permits for, construct, acquire, own, operate, maintain, repair, improve, and extend inside and outside the boundaries of the district any works,

17

Baylor County, Texas ASHRAE 169-2006 Climate Zone | Open Energy...  

Open Energy Info (EERE)

Baylor County, Texas ASHRAE 169-2006 Climate Zone Jump to: navigation, search County Climate Zone Place Baylor County, Texas ASHRAE Standard ASHRAE 169-2006 Climate Zone Number...

18

Aransas County, Texas ASHRAE 169-2006 Climate Zone | Open Energy...  

Open Energy Info (EERE)

Aransas County, Texas ASHRAE 169-2006 Climate Zone Jump to: navigation, search County Climate Zone Place Aransas County, Texas ASHRAE Standard ASHRAE 169-2006 Climate Zone Number...

19

Austin County, Texas ASHRAE 169-2006 Climate Zone | Open Energy...  

Open Energy Info (EERE)

Austin County, Texas ASHRAE 169-2006 Climate Zone Jump to: navigation, search County Climate Zone Place Austin County, Texas ASHRAE Standard ASHRAE 169-2006 Climate Zone Number...

20

Atascosa County, Texas ASHRAE 169-2006 Climate Zone | Open Energy...  

Open Energy Info (EERE)

Atascosa County, Texas ASHRAE 169-2006 Climate Zone Jump to: navigation, search County Climate Zone Place Atascosa County, Texas ASHRAE Standard ASHRAE 169-2006 Climate Zone Number...

Note: This page contains sample records for the topic "johnson county texas" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


21

Bastrop County, Texas ASHRAE 169-2006 Climate Zone | Open Energy...  

Open Energy Info (EERE)

Bastrop County, Texas ASHRAE 169-2006 Climate Zone Jump to: navigation, search County Climate Zone Place Bastrop County, Texas ASHRAE Standard ASHRAE 169-2006 Climate Zone Number...

22

Investigation of Integrated Subsurface Processing of Landfill Gas and Carbon Sequestration, Johnson County, Kansas  

SciTech Connect

The Johnson County Landfill in Shawnee, KS is operated by Deffenbaugh Industries and serves much of metropolitan Kansas City. Refuse, which is dumped in large plastic-underlined trash cells covering several acres, is covered over with shale shortly after burial. The landfill waste, once it fills the cell, is then drilled by Kansas City LFG, so that the gas generated by anaerobic decomposition of the refuse can be harvested. Production of raw landfill gas from the Johnson County landfill comes from 150 wells. Daily production is approximately 2.2 to 2.5 mmcf, of which approximately 50% is methane and 50% is carbon dioxide and NMVOCs (non-methane volatile organic compounds). Heating value is approximately 550 BTU/scf. A upgrading plant, utilizing an amine process, rejects the carbon dioxide and NMVOCs, and upgrades the gas to pipeline quality (i.e., nominally a heating value >950 BTU/scf). The gas is sold to a pipeline adjacent to the landfill. With coal-bearing strata underlying the landfill, and carbon dioxide a major effluent gas derived from the upgrading process, the Johnson County Landfill is potentially an ideal setting to study the feasibility of injecting the effluent gas in the coals for both enhanced coalbed methane recovery and carbon sequestration. To these ends, coals below the landfill were cored and then were analyzed for their thickness and sorbed gas content, which ranged up to 79 scf/ton. Assuming 1 1/2 square miles of land (960 acres) at the Johnson County Landfill can be utilized for coalbed and shale gas recovery, the total amount of in-place gas calculates to 946,200 mcf, or 946.2 mmcf, or 0.95 bcf (i.e., 985.6 mcf/acre X 960 acres). Assuming that carbon dioxide can be imbibed by the coals and shales on a 2:1 ratio compared to the gas that was originally present, then 1682 to 1720 days (4.6 to 4.7 years) of landfill carbon dioxide production can be sequestered by the coals and shales immediately under the landfill. Three coal--the Bevier, Fleming, and Mulberry coals--are the major coals of sufficient thickness (nominally >1-foot) that can imbibe carbon dioxide gas with an enhanced coalbed injection. Comparison of the adsorption gas content of coals to the gas desorbed from the coals shows that the degree of saturation decreases with depth for the coals.

K. David Newell; Timothy R. Carr

2007-03-31T23:59:59.000Z

23

EA-1769: Battleground Energy Recovery Project, Harris County, Texas |  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

69: Battleground Energy Recovery Project, Harris County, Texas 69: Battleground Energy Recovery Project, Harris County, Texas EA-1769: Battleground Energy Recovery Project, Harris County, Texas Summary This EA evaluates the environmental impacts of a proposal to provide $1.94 million in cost-shared funding to the Houston Advanced Research Center for the Battleground Energy Recovery Project, which would produce 8 megawatts of electricity from high pressure steam generated by capturing heat that is currently lost at the Clean Harbors Deer Park facility. The proposed project was selected by the DOE's Office of Energy Efficiency and Renewable Energy to advance research and demonstration of energy efficiency and renewable energy technologies. Public Comment Opportunities No public comment opportunities available at this time.

24

Feasibility Study of Economics and Performance of Solar Photovoltaics at Johnson County Landfill  

DOE Green Energy (OSTI)

The U.S. Environmental Protection Agency (EPA), in accordance with the RE-Powering America's Land initiative, selected the Johnson County Landfill in Shawnee, Kansas, for a feasibility study of renewable energy production. Citizens of Shawnee, city planners, and site managers are interested in redevelopment uses for landfills in Kansas that are particularly well suited for grid-tied solar photovoltaic (PV) installation. This report assesses the Johnson County Landfill for possible grid-tied PV installations and estimates the cost, performance, and site impacts of three different PV options: crystalline silicon (fixed tilt), crystalline silicon (single-axis tracking), and thin film (fixed tilt). Each option represents a standalone system that can be sized to use an entire available site area. In addition, the report outlines financing options that could assist in the implementation of a system. The feasibility of PV systems installed on landfills is highly impacted by the available area for an array, solar resource, operating status, landfill cap status, distance to transmission lines, and distance to major roads. The report findings are applicable to other landfills in the surrounding area.

Salasovich, J.; Mosey, G.

2012-01-01T23:59:59.000Z

25

County Solid Waste Control Act (Texas)  

Energy.gov (U.S. Department of Energy (DOE))

The purpose of this chapter is to authorize a cooperative effort by counties, public agencies, and other persons for the safe and economical collection, transportation, and disposal of solid waste...

26

Environmental assessment, Deaf Smith County site, Texas  

SciTech Connect

The Nuclear Waste Policy Act of 1982 (42 USC sections 10101-10226) requires the environmental assessment of a proposed site to include a statement of the basis for nominating a site as suitable for characterization. Volume 2 provides a detailed statement evaluating the site suitability of the Deaf Smith County Site under DOE siting guidelines, as well as a comparison of the Deaf Smith County Site to the other sites under consideration. The evaluation of the Deaf Smith County Site is based on the impacts associated with the reference repository design, but the evaluation will not change if based on the Mission Plan repository concept. The second part of this document compares the Deaf Smith County Site to Davis Canyon, Hanford, Richton Dome and Yucca Mountain. This comparison is required under DOE guidelines and is not intended to directly support subsequent recommendation of three sites for characterization as candidate sites. 259 refs., 29 figs., 66 refs. (MHB)

Not Available

1986-05-01T23:59:59.000Z

27

Measuring availability of healthful foods in two rural Texas counties  

E-Print Network (OSTI)

A comprehensive in-store survey may capture the availability of healthful food alternatives in different store types in two rural counties. The purpose of this study was to: (1) compare the availability of healthful foods in two rural Texas counties; and (2) compare the variety of healthful foods in two rural Texas counties. This study also acts as a pilot test for further food availability research in four other rural counties of the Brazos Valley. An unobtrusive, observational survey was used to measure availability of healthful food in all (100%) grocery, convenience, and discount stores (n=44) in two rural counties in the Brazos Valley of Texas. Results from the surveys indicated that availability of healthful food alternatives varied greatly among the three different store types and two counties surveyed. Grocery stores (n=7) were more likely than convenience (n=31) and discount (n=6) stores to offer fresh fruits and vegetables, leanmeat options, and low-fat/skim milk products. Fresh fruits and vegetables were available in 100% of grocery stores. Only 16.1% of convenience stores, compared with 0.0% in discount stores, offered fresh fruits and vegetables. Variety of fruits and vegetables varied greatly among the three different store types and the two counties surveyed. Findings suggest that the survey utilized was feasible in determining the availability of healthful food items in two rural counties. Implications of this study include the need for knowledge and awareness of rural consumers and rural food supply. Furthermore, nutrition education for rural consumers and those purchasing foods provided to rural areas is desired. This study provided that further investigation into the availability of healthful foods in rural areas is needed.

Bustillos, Brenda Diane

2006-12-01T23:59:59.000Z

28

DeWitt County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

DeWitt County, Texas: Energy Resources DeWitt County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 29.1235194°, -97.3516558° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":29.1235194,"lon":-97.3516558,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

29

Dallas County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Dallas County, Texas: Energy Resources Dallas County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 32.8024682°, -96.8350999° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":32.8024682,"lon":-96.8350999,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

30

Palo Pinto County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

County, Texas: Energy Resources County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 32.7074673°, -98.3964938° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":32.7074673,"lon":-98.3964938,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

31

Rockwall County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Rockwall County, Texas: Energy Resources Rockwall County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 32.8721646°, -96.365157° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":32.8721646,"lon":-96.365157,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

32

Runnels County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Runnels County, Texas: Energy Resources Runnels County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 31.8714508°, -99.9912254° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":31.8714508,"lon":-99.9912254,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

33

Tom Green County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

County, Texas: Energy Resources County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 31.3839017°, -100.439656° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":31.3839017,"lon":-100.439656,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

34

Dimmit County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Dimmit County, Texas: Energy Resources Dimmit County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 28.4116514°, -99.8124935° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":28.4116514,"lon":-99.8124935,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

35

Bexar County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Bexar County, Texas: Energy Resources Bexar County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 29.4200763°, -98.5721016° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":29.4200763,"lon":-98.5721016,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

36

Hockley County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Hockley County, Texas: Energy Resources Hockley County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 33.6212592°, -102.3463875° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":33.6212592,"lon":-102.3463875,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

37

Kaufman County, Texas: Energy Resources | Open Energy Information  

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Kaufman County, Texas: Energy Resources Kaufman County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 32.6494596°, -96.3226072° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":32.6494596,"lon":-96.3226072,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

38

Collin County, Texas: Energy Resources | Open Energy Information  

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Collin County, Texas: Energy Resources Collin County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 33.1795213°, -96.4929797° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":33.1795213,"lon":-96.4929797,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

39

Gregg County, Texas: Energy Resources | Open Energy Information  

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Gregg County, Texas: Energy Resources Gregg County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 32.4892547°, -94.8520636° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":32.4892547,"lon":-94.8520636,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

40

McCulloch County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

McCulloch County, Texas: Energy Resources McCulloch County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 31.2016122°, -99.2785583° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":31.2016122,"lon":-99.2785583,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

Note: This page contains sample records for the topic "johnson county texas" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


41

Nolan County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Nolan County, Texas: Energy Resources Nolan County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 32.3818737°, -100.3497895° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":32.3818737,"lon":-100.3497895,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

42

Ochiltree County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Ochiltree County, Texas: Energy Resources Ochiltree County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 36.2921544°, -100.8000051° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":36.2921544,"lon":-100.8000051,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

43

Collingsworth County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Collingsworth County, Texas: Energy Resources Collingsworth County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.0351623°, -100.3497895° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":35.0351623,"lon":-100.3497895,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

44

Waller County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Waller County, Texas: Energy Resources Waller County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 29.9751629°, -96.0255738° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":29.9751629,"lon":-96.0255738,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

45

Irion County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Irion County, Texas: Energy Resources Irion County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 31.2557696°, -100.8903099° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":31.2557696,"lon":-100.8903099,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

46

Cherokee County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

County, Texas: Energy Resources County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 31.7981828°, -95.1432068° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":31.7981828,"lon":-95.1432068,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

47

Throckmorton County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Throckmorton County, Texas: Energy Resources Throckmorton County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 33.1814565°, -99.2785583° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":33.1814565,"lon":-99.2785583,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

48

Childress County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Childress County, Texas: Energy Resources Childress County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 34.5257527°, -100.1703257° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":34.5257527,"lon":-100.1703257,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

49

Coke County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Coke County, Texas: Energy Resources Coke County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 31.8277663°, -100.5296115° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":31.8277663,"lon":-100.5296115,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

50

Concho County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Concho County, Texas: Energy Resources Concho County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 31.3431641°, -99.8124935° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":31.3431641,"lon":-99.8124935,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

51

Nacogdoches County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Nacogdoches County, Texas: Energy Resources Nacogdoches County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 31.6353071°, -94.645035° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":31.6353071,"lon":-94.645035,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

52

Travis County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Travis County, Texas: Energy Resources Travis County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 30.2097015°, -97.6982272° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":30.2097015,"lon":-97.6982272,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

53

Stonewall County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Stonewall County, Texas: Energy Resources Stonewall County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 33.1114912°, -100.1703257° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":33.1114912,"lon":-100.1703257,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

54

Lipscomb County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Lipscomb County, Texas: Energy Resources Lipscomb County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 36.2464455°, -100.3497895° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":36.2464455,"lon":-100.3497895,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

55

Upshur County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Upshur County, Texas: Energy Resources Upshur County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 32.7099747°, -94.976654° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":32.7099747,"lon":-94.976654,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

56

Val Verde County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

County, Texas: Energy Resources County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 29.8687682°, -101.1617356° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":29.8687682,"lon":-101.1617356,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

57

Hays County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Hays County, Texas: Energy Resources Hays County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 30.0537607°, -98.0028892° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":30.0537607,"lon":-98.0028892,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

58

Garza County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Garza County, Texas: Energy Resources Garza County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 33.1955897°, -101.2523792° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":33.1955897,"lon":-101.2523792,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

59

Foard County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Foard County, Texas: Energy Resources Foard County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 33.9865825°, -99.7678687° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":33.9865825,"lon":-99.7678687,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

60

Shackelford County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Shackelford County, Texas: Energy Resources Shackelford County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 32.8242297°, -99.2785583° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":32.8242297,"lon":-99.2785583,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

Note: This page contains sample records for the topic "johnson county texas" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


61

Swisher County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Swisher County, Texas: Energy Resources Swisher County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 34.5532757°, -101.7979613° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":34.5532757,"lon":-101.7979613,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

62

Callahan County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

County, Texas: Energy Resources County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 32.2728116°, -99.456155° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":32.2728116,"lon":-99.456155,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

63

Zapata County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Zapata County, Texas: Energy Resources Zapata County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 26.9730763°, -99.1013498° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":26.9730763,"lon":-99.1013498,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

64

Liberty County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Liberty County, Texas: Energy Resources Liberty County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 30.1633593°, -94.8105955° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":30.1633593,"lon":-94.8105955,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

65

Lubbock County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Lubbock County, Texas: Energy Resources Lubbock County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 33.6753624°, -101.7979613° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":33.6753624,"lon":-101.7979613,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

66

Culberson County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Culberson County, Texas: Energy Resources Culberson County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 31.347767°, -104.4723301° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":31.347767,"lon":-104.4723301,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

67

Kinney County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Kinney County, Texas: Energy Resources Kinney County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 29.2934865°, -100.3497895° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":29.2934865,"lon":-100.3497895,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

68

Gonzales County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Gonzales County, Texas: Energy Resources Gonzales County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 29.4834878°, -97.5247243° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":29.4834878,"lon":-97.5247243,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

69

Tarrant County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Tarrant County, Texas: Energy Resources Tarrant County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 32.7732044°, -97.3516558° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":32.7732044,"lon":-97.3516558,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

70

Milam County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Milam County, Texas: Energy Resources Milam County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 30.7983914°, -97.0068393° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":30.7983914,"lon":-97.0068393,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

71

Freestone County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Freestone County, Texas: Energy Resources Freestone County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 31.7534889°, -96.1526985° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":31.7534889,"lon":-96.1526985,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

72

Schleicher County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Schleicher County, Texas: Energy Resources Schleicher County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 30.9234947°, -100.5296115° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":30.9234947,"lon":-100.5296115,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

73

Cottle County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Cottle County, Texas: Energy Resources Cottle County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 34.159117°, -100.3497895° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":34.159117,"lon":-100.3497895,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

74

Parmer County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Parmer County, Texas: Energy Resources Parmer County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 34.4604292°, -102.7135121° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":34.4604292,"lon":-102.7135121,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

75

Maverick County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Maverick County, Texas: Energy Resources Maverick County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 28.7410473°, -100.3497895° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":28.7410473,"lon":-100.3497895,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

76

La Salle County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Salle County, Texas: Energy Resources Salle County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 28.2758921°, -99.1013498° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":28.2758921,"lon":-99.1013498,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

77

Wise County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Wise County, Texas: Energy Resources Wise County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 33.2895861°, -97.6982272° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":33.2895861,"lon":-97.6982272,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

78

MEMORANDUM OF UNDERSTANDING BETWEEN SHERIFF'S OFFICE. CARSON COUNTY, TEXAS  

NLE Websites -- All DOE Office Websites (Extended Search)

BETWEEN BETWEEN SHERIFF'S OFFICE. CARSON COUNTY, TEXAS AND - THE UNITED STATES DEPARTMENT OF ENERGY NATIONAL NUCLEAR SECURlTY ADMINISTRATION DE-G M04-94AL94714 (2008 EXTENSION) This Mcrnorandum of Understanding (hereinafter called "MOU") is between the Shcriff s Office, Carson County, Texas and the United States of America, acting through the Pantex Site Office, United States Department of Energy, National Nuclear Security Administration (hereinafter called "DOE/NNSA" or "PANTEX"). I. INTRODUCTION A. BACKGROUND. Both parties have a mutual interest and responsibility for the planning, preparedness and response to protect people, property and the environment and to minimize the consequences of emergencies. B. PURPOSE. The purpose of this MOU is to recognize the need for

79

Titus County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Titus County, Texas: Energy Resources Titus County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 33.2493126°, -94.976654° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":33.2493126,"lon":-94.976654,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

80

Harris County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Harris County, Texas: Energy Resources Harris County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 29.7751825°, -95.3102505° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":29.7751825,"lon":-95.3102505,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

Note: This page contains sample records for the topic "johnson county texas" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


81

Lampasas County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Lampasas County, Texas: Energy Resources Lampasas County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 31.2737682°, -98.2212979° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":31.2737682,"lon":-98.2212979,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

82

Frio County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Frio County, Texas: Energy Resources Frio County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 28.831355°, -99.1013498° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":28.831355,"lon":-99.1013498,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

83

El Paso County, Texas: Energy Resources | Open Energy Information  

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Paso County, Texas: Energy Resources Paso County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 31.8039824°, -106.2051484° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":31.8039824,"lon":-106.2051484,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

84

Fort Bend County, Texas: Energy Resources | Open Energy Information  

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Bend County, Texas: Energy Resources Bend County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 29.5692614°, -95.8142885° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":29.5692614,"lon":-95.8142885,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

85

Matagorda County, Texas: Energy Resources | Open Energy Information  

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Matagorda County, Texas: Energy Resources Matagorda County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 28.8204837°, -95.9832577° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":28.8204837,"lon":-95.9832577,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

86

Somervell County, Texas: Energy Resources | Open Energy Information  

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Somervell County, Texas: Energy Resources Somervell County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 32.2547696°, -97.7416703° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":32.2547696,"lon":-97.7416703,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

87

Cameron County, Texas: Energy Resources | Open Energy Information  

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Cameron County, Texas: Energy Resources Cameron County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 26.1284971°, -97.5247243° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":26.1284971,"lon":-97.5247243,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

88

Live Oak County, Texas: Energy Resources | Open Energy Information  

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Live Oak County, Texas: Energy Resources Live Oak County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 28.342294°, -98.0465185° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":28.342294,"lon":-98.0465185,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

89

Bosque County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Bosque County, Texas: Energy Resources Bosque County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 31.8507607°, -97.6982272° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":31.8507607,"lon":-97.6982272,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

90

Jim Hogg County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Hogg County, Texas: Energy Resources Hogg County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 26.995506°, -98.7481167° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":26.995506,"lon":-98.7481167,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

91

Nueces County, Texas: Energy Resources | Open Energy Information  

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Nueces County, Texas: Energy Resources Nueces County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 27.7693351°, -97.4814163° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":27.7693351,"lon":-97.4814163,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

92

Dickens County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Dickens County, Texas: Energy Resources Dickens County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 33.5985109°, -100.7097867° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":33.5985109,"lon":-100.7097867,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

93

Pecos County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Pecos County, Texas: Energy Resources Pecos County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 30.8253214°, -102.6216211° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":30.8253214,"lon":-102.6216211,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

94

Coryell County, Texas: Energy Resources | Open Energy Information  

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Coryell County, Texas: Energy Resources Coryell County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 31.4774358°, -97.87216° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":31.4774358,"lon":-97.87216,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

95

Sterling County, Texas: Energy Resources | Open Energy Information  

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Sterling County, Texas: Energy Resources Sterling County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 31.781493°, -101.0711758° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":31.781493,"lon":-101.0711758,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

96

Llano County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Llano County, Texas: Energy Resources Llano County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 30.692528°, -98.7481167° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":30.692528,"lon":-98.7481167,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

97

Wilbarger County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Wilbarger County, Texas: Energy Resources Wilbarger County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 34.0688089°, -99.2785583° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":34.0688089,"lon":-99.2785583,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

98

San Augustine County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Augustine County, Texas: Energy Resources Augustine County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 31.4699363°, -94.1513764° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":31.4699363,"lon":-94.1513764,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

99

Comal County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Comal County, Texas: Energy Resources Comal County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 29.8105572°, -98.2212979° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":29.8105572,"lon":-98.2212979,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

100

Donley County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Donley County, Texas: Energy Resources Donley County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 34.9875355°, -100.8903099° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":34.9875355,"lon":-100.8903099,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

Note: This page contains sample records for the topic "johnson county texas" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
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101

San Saba County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Saba County, Texas: Energy Resources Saba County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 31.238909°, -98.7481167° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":31.238909,"lon":-98.7481167,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

102

Eastland County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Eastland County, Texas: Energy Resources Eastland County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 32.3240465°, -98.7481167° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":32.3240465,"lon":-98.7481167,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

103

Hudspeth County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Hudspeth County, Texas: Energy Resources Hudspeth County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 31.5707433°, -105.5943388° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":31.5707433,"lon":-105.5943388,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

104

Lavaca County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Lavaca County, Texas: Energy Resources Lavaca County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 29.3359054°, -96.8350999° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":29.3359054,"lon":-96.8350999,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

105

Motley County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Motley County, Texas: Energy Resources Motley County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 34.1280332°, -100.7097867° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":34.1280332,"lon":-100.7097867,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

106

Bowie County, Texas: Energy Resources | Open Energy Information  

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Bowie County, Texas: Energy Resources Bowie County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 33.4473287°, -94.479976° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":33.4473287,"lon":-94.479976,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

107

Willacy County, Texas: Energy Resources | Open Energy Information  

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Willacy County, Texas: Energy Resources Willacy County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 26.4948223°, -97.6982272° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":26.4948223,"lon":-97.6982272,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

108

Hemphill County, Texas: Energy Resources | Open Energy Information  

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Hemphill County, Texas: Energy Resources Hemphill County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.9022267°, -100.3497895° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":35.9022267,"lon":-100.3497895,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

109

Zavala County, Texas: Energy Resources | Open Energy Information  

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Zavala County, Texas: Energy Resources Zavala County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 28.8801264°, -99.7232673° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":28.8801264,"lon":-99.7232673,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

110

Upton County, Texas: Energy Resources | Open Energy Information  

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Upton County, Texas: Energy Resources Upton County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 31.3384843°, -101.9804613° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":31.3384843,"lon":-101.9804613,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

111

Sutton County, Texas: Energy Resources | Open Energy Information  

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Sutton County, Texas: Energy Resources Sutton County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 30.5598827°, -100.5296115° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":30.5598827,"lon":-100.5296115,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

112

Van Zandt County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Zandt County, Texas: Energy Resources Zandt County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 32.4936974°, -95.8142885° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":32.4936974,"lon":-95.8142885,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

113

Yoakum County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Yoakum County, Texas: Energy Resources Yoakum County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 33.2114703°, -102.8975098° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":33.2114703,"lon":-102.8975098,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

114

Grimes County, Texas: Energy Resources | Open Energy Information  

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Grimes County, Texas: Energy Resources Grimes County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 30.4829853°, -95.9832577° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":30.4829853,"lon":-95.9832577,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

115

Brazos County, Texas: Energy Resources | Open Energy Information  

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County, Texas: Energy Resources County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 30.6504141°, -96.3226072° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":30.6504141,"lon":-96.3226072,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

116

Randall County, Texas: Energy Resources | Open Energy Information  

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Randall County, Texas: Energy Resources Randall County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 34.9020377°, -101.7979613° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":34.9020377,"lon":-101.7979613,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

117

Kenedy County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Kenedy County, Texas: Energy Resources Kenedy County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 26.8697147°, -97.6982272° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":26.8697147,"lon":-97.6982272,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

118

Burnet County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Burnet County, Texas: Energy Resources Burnet County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 30.7270349°, -98.2212979° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":30.7270349,"lon":-98.2212979,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

119

Uvalde County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Uvalde County, Texas: Energy Resources Uvalde County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 29.3342663°, -99.8124935° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":29.3342663,"lon":-99.8124935,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

120

McLennan County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

McLennan County, Texas: Energy Resources McLennan County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 31.5182285°, -97.179026° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":31.5182285,"lon":-97.179026,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

Note: This page contains sample records for the topic "johnson county texas" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
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We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


121

Victoria County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Victoria County, Texas: Energy Resources Victoria County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 28.7712909°, -97.0068393° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":28.7712909,"lon":-97.0068393,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

122

Terry County, Texas: Energy Resources | Open Energy Information  

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Terry County, Texas: Energy Resources Terry County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 33.0909654°, -102.3463875° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":33.0909654,"lon":-102.3463875,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

123

Jim Wells County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

County, Texas: Energy Resources County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 27.7841718°, -98.0465185° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":27.7841718,"lon":-98.0465185,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

124

Kimble County, Texas: Energy Resources | Open Energy Information  

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Kimble County, Texas: Energy Resources Kimble County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 30.4338473°, -99.8124935° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":30.4338473,"lon":-99.8124935,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

125

Brazoria County, Texas: Energy Resources | Open Energy Information  

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County, Texas: Energy Resources County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 29.2131857°, -95.4777811° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":29.2131857,"lon":-95.4777811,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

126

Duval County, Texas: Energy Resources | Open Energy Information  

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Duval County, Texas: Energy Resources Duval County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 27.7525271°, -98.5721016° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":27.7525271,"lon":-98.5721016,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

127

Parker County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Parker County, Texas: Energy Resources Parker County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 32.7415519°, -97.87216° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":32.7415519,"lon":-97.87216,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

128

Scurry County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Scurry County, Texas: Energy Resources Scurry County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 32.6937844°, -100.8903099° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":32.6937844,"lon":-100.8903099,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

129

Denton County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

County, Texas: Energy Resources County, Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 33.1418611°, -97.179026° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":33.1418611,"lon":-97.179026,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

130

Tri-County Electric Coop, Inc (Texas) | Open Energy Information  

Open Energy Info (EERE)

Inc (Texas) Inc (Texas) Jump to: navigation, search Name Tri-County Electric Coop, Inc Place Texas Utility Id 19159 Utility Location Yes Ownership C NERC Location TRE NERC ERCOT Yes ISO Ercot Yes Activity Distribution Yes References EIA Form EIA-861 Final Data File for 2010 - File1_a[1] LinkedIn Connections CrunchBase Profile No CrunchBase profile. Create one now! This article is a stub. You can help OpenEI by expanding it. Utility Rate Schedules Grid-background.png Commercial Service - Economic Development Commercial Cotton Gin Service Industrial Distributed Generation Facilities Less than 10MW (Over50KW and under 10MW) Commercial Distributed Generation Facilities Less than 10MW (50KW and smaller) Commercial General Service Single Phase Commercial General Service Three Phase Commercial

131

A comprehensive master plan for White River Youth Camp, Crosby County Texas.  

E-Print Network (OSTI)

??White River Youth Camp (WRYC), population 165, composed of 120 Campers and 45 counselors and staff, and located in Crosby County, Texas, currently does not (more)

[No author

132

Texas County "Flips The Switch" On New Energy-Efficient Complex |  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Texas County "Flips The Switch" On New Energy-Efficient Complex Texas County "Flips The Switch" On New Energy-Efficient Complex Texas County "Flips The Switch" On New Energy-Efficient Complex March 7, 2011 - 5:17pm Addthis Fifth graders from Pharr-San Juan-Alamo Independent School District’s North Alamo Elementary celebrate the opening of the new Precinct 2 Multi-Purpose Facility and Administration Complex in Hidalgo County, TX. The students received tours of the facility and heard presentations from vendors and other green organizations in the Rio Grande Valley on energy efficiency ideas for the home, recycling, energy production and consumption, wind and solar power and groundwater runoff. Fifth graders from Pharr-San Juan-Alamo Independent School District's North Alamo Elementary celebrate the opening of the new Precinct 2

133

DE. GM05-NA25851 MEMORANDUM OF UNDERSTANDING BETWEEN ARMSTRONG COUNTY, TEXAS  

NLE Websites -- All DOE Office Websites (Extended Search)

1 1 MEMORANDUM OF UNDERSTANDING BETWEEN ARMSTRONG COUNTY, TEXAS AND THE UNITED STATES DEPARTMENT OF ENERGY This Memorandum of Understanding (hereinafter called "MOU") is between Armstrong County, Texas and the United States of America, acting through the United States Department of EnergyINational Nuclear Security Administration (hereinafter called "DOE/NNSAn or "Pantex"). I. INTRODUCTION A. BACKGROUND. Both parties have a mutual interest and responsibility for emergency planning, preparedness and response to protect people, property and the environment and to facilitate a coordinated information flow to emergency responders through an Emergency Operations Center (EOC). B. PURPOSE. 'The purpose of this MOU is to recognize the need to identify a

134

Environmental analysis of geopressured-geothermal prospect areas, Brazoria and Kenedy Counties, Texas  

DOE Green Energy (OSTI)

Preliminary environmental data, including current land use, substrate lithology, soils, natural hazards, water resources, biological assemblages, meteorological data, and regulatory considerations have been collected and analyzed for approximately 150 km/sup 2/ of land: (1) near Chocolate Bayou, Brazoria County, Texas, where a geopressured-geothermal test well was drilled in 1978, and (2) near the rural community of Armstrong, Kenedy County, Texas, where future geopressured-geothermal test well development may occur. The study was designed to establish an environmental data base and to determine, within spatial constraints set by subsurface reservoir conditions, environmentally suitable sites for geopressured-geothermal wells.

White, W.A.; McGraw, M.; Gustavson, T.C.

1978-01-01T23:59:59.000Z

135

Trends in Texas youth livestock exhibition and County Extension agent perceptions and adoption of quality counts  

E-Print Network (OSTI)

Each year, County Extension Agents dedicate many hours toward educational programs to serve clientele. One of the largest programs in 4-H is the youth livestock project. Livestock projects take a significant amount of time and there is a variety of programs offered to youth exhibitors. One of these educational programs offered though Texas Cooperative Extension is Quality Counts. Quality Counts focuses on teaching character education and quality assurance to youth livestock exhibitors. The purpose of this study was to determine the total number of youth livestock projects entered in Texas during 2006 and identify any apparent educational trends. The second objective of this study was to determine how Quality Counts is perceived by County Extension Agents. To complete this study, a web based survey was sent administered to every County Extension office in Texas. 250 of 254 counties responded to the survey (98.43% response rate). From data collected, it was revealed that there were a total of 89,839 total livestock projects entered in 2006 at the county level (76,225 market and 13, 614 breeding). This data was compared to a previous study completed in 2001 by Boleman, Howard, Smith, and Couch. This data compared market livestock entry numbers. Based upon the comparison, market livestock projects have increased by 7.06% since 2000. Beef cattle and goats have increased, while sheep and swine have slightly decreased. Roughly a third of Texas counties will be utilizing the Quality Counts curriculum during the year 2007. Qualitative analysis reveals that Quality Counts is seen as educationally useful and easy to implement into traditional livestock educational programming, and is most often used as part of ongoing project clinics. Most importantly, program participants are increasing their knowledge of livestock projects, character, and ethics. Respondents are also beginning to see program participants behaviors change because of participating in Quality Counts.

Coufal, Dustin Wayne

2007-12-01T23:59:59.000Z

136

Bee County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Texas: Energy Resources Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 28.3624206°, -97.6982272° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":28.3624206,"lon":-97.6982272,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

137

Chambers County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Texas: Energy Resources Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 29.7524956°, -94.6863782° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":29.7524956,"lon":-94.6863782,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

138

Midland County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Texas: Energy Resources Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 31.8781368°, -101.9804613° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":31.8781368,"lon":-101.9804613,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

139

Bell County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Texas: Energy Resources Texas: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 31.134411°, -97.5247243° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":31.134411,"lon":-97.5247243,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

140

Development of an ozone climatology for Harris County, Texas  

SciTech Connect

The Houston Regional Monitoring Corporation (HRM) has performed continuous ambient air quality and meteorological monitoring in the Ship Channel area of east Harris County since August 1981. The HRM monitoring network is one of the largest Environmental Protection Agency (EPA) approved Prevention of Significant Deterioration (PSD) monitoring network in the United States operated by an industrial group. As an adjunct to its monitoring. HRM has funded extensive meteorological and statistical analyses of ozone monitoring data in Harris County. One of the goals of these studies was to determine those meteorological conditions responsible for the formation of elevated ozone concentrations in Harris County. The analyses performed included the use of principal component analysis and cluster analysis. These analysis techniques have individually been applied to ozone and air quality research problems. The combined use of these techniques in this analysis, however, is a unique application of these statistical tools to an ozone air quality analysis. As a result of these analyses, a climatology of those episodes conducive to elevated ozone formation in Harris County was developed.

Balentine, H.W.; Carter, J.C. (Radian Corp., Austin, TX (USA)); Preston, J. (Tenneco Polymers, Houston, TX (US))

1987-01-01T23:59:59.000Z

Note: This page contains sample records for the topic "johnson county texas" from the National Library of EnergyBeta (NLEBeta).
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141

BETWEEN RANDALL COUNTY, TEXAS AND 'I'HE UNITED STATES DEPARTMENT OF ENEKGY  

NLE Websites -- All DOE Office Websites (Extended Search)

BETWEEN BETWEEN RANDALL COUNTY, TEXAS AND - 'I'HE UNITED STATES DEPARTMENT OF ENEKGY This Memorandum of Understanding (hereinslfier callcd "MOU") is between Randall County. Texas, (hereinaner callcd "Cnunty") and thc Uni~ed States Department of Energy: (hcrcinafter called "I3ClE'' or b'l'an?ex"). 1. INTRODUCTION A. BACKGKOUN L) Both prties havc a mutual interest and responsibility for fire fighting activities tu protect penplc, propxty. and the cnvimnmcnt. B. fl RPOSE 'Ihe purpose of this Mot' is to recognize the need Tor coopemtion on certain fire lighting responsibilities of mutuaI conccrn and to provide for the mutual assistance of parties in accordance \hi tith thc Standard Opemting Pmedures (SOP) contained in Appendix A of this

142

EIS-0493: Corpus Christi LNG Terminal and Pipeline Project, Nueces and San Patricio Counties, Texas  

Energy.gov (U.S. Department of Energy (DOE))

The Federal Energy Regulatory Commission (FERC) is preparing, with DOE as a cooperating agency, an EIS to analyze the potential environmental impacts of a proposal to construct and operate a liquefied natural gas export and import terminal on the north shore of Corpus Christi Bay in Nueces and San Patricio Counties, Texas; a marine berth connecting the terminal to the adjacent La Quinta Channel; and an approximately 23-mile-long natural gas transmission pipeline and associated facilities.

143

Horizontal drilling in the Lower Glen Rose Formation, Maverick County, Texas  

Science Conference Proceedings (OSTI)

This paper presents preliminary results of a project to assess the economic viability of horizontal drilling in the Lower Glen Rose Formation of Maverick County, Texas. This project is part of an ongoing Department of Energy investigation of directional drilling in the development of gas resources within the United States. The paper includes: project description; results covering geologic setting, reservoir engineering, and seismic surveys; and future work on drilling location selection, drilling, and well completion. (AT)

Drimal, C.E.; Muncey, G.

1992-01-01T23:59:59.000Z

144

Horizontal drilling in the Lower Glen Rose Formation, Maverick County, Texas  

Science Conference Proceedings (OSTI)

This paper presents preliminary results of a project to assess the economic viability of horizontal drilling in the Lower Glen Rose Formation of Maverick County, Texas. This project is part of an ongoing Department of Energy investigation of directional drilling in the development of gas resources within the United States. The paper includes: project description; results covering geologic setting, reservoir engineering, and seismic surveys; and future work on drilling location selection, drilling, and well completion. (AT)

Drimal, C.E.; Muncey, G.

1992-10-01T23:59:59.000Z

145

Earth fissures of the Red Light Bolson, Hudspeth County, Texas  

E-Print Network (OSTI)

The Red Light Bolson lies in Trans-Pecos Texas. Two sets of earth fissures of differing age are present in the fine-grained alluvium which fills the bolson. These fissures are characterized by a continuous to discontinuous series of elongate, shallow surface depressions and a vegetation lineament. Collapse of a shallow subsurface cavity, which formed through erosional degradation of surficial soils overlying a fracture in a relatively impermeable calcrete, most likely created the observed surface characteristics. To test this hypothesis, surface and shallow subsurface investigations were conducted. The collapse depressions of the older fissures are mainly continuous and rounded in profile. They average 4.5 and 2.5 ft in width and depth, respectively, and exhibit an average width to depth ratio (W/D) of 2.18. The vegetation lineaments of the older fissures are continuous. The collapse depressions of the younger fissures are discontinuous and rectangular in profile. They average 2.7 and 3.6 ft in width and depth, respectively, and exhibit an average W/D of 0.62. The vegetation lineaments of the younger fissures are predominantly discontinuous. The surficial soils exposed in a trench excavated across a young fissure included an A horizon of clayey to silty, fine-grained sand, and a stage 111, fine-grained K horizon. An older, stage IV, gravelly K horizon was exposed below the upper calcrete. A cavity was present below an uncollapsed portion of the fissure at the excavation site. This cavity was located in the upper portion of the upper calcrete. The upper calcrete was highly degraded below the cavity. A fracture was present in the lower calcrete below the degradation zone. The bedding and grain-size characteristics of the degradation zone and fracture fill indicate that the fracture in the lower calcrete leads to the observed surface characteristics by permitting downward migration of water and soil particles. The flux of water and sediment through the fracture degrades the upper calcrete and forms the cavity, which collapses to form a discontinuous series of depressions. These depressions capture runoff which migrates downward through the fracture. The high moisture infiltration leads to prolific vegetation growth along the fissure trace.

Sherrier, Michael Perry

1994-01-01T23:59:59.000Z

146

Russell Johnson  

NLE Websites -- All DOE Office Websites (Extended Search)

Arasteh, Dariush K., Russell Johnson, Stephen E. Selkowitz, and Deborah J. Connell. "Cooling Energy and Cost Savings with Daylighting." In 2nd Annual Symposium on Improving...

147

Strategic petroleum reserve seaway complex distribution enhancements, Brazoria, Galveston and Harris Counties, Texas. Revised environmental assessment  

Science Conference Proceedings (OSTI)

The Strategic Petroleum Reserve (SPR) of the US Department of Energy (DOE) proposes to construct and operate a 40-inch diameter, 46-mile long buried crude oil pipeline from existing facilities of the SPR Seaway Complex located near Freeport, Texas, to an existing commercial crude oil terminal near Texas City, Texas. In May 1984, DOE issued an Environmental Assessment ((EA); DOE/EA-0252) and a Finding of No Significant Impact for this action. The May 1985 EA addressed the construction and operation of a DOE-owned buried crude oil pipeline from Bryan Mound to the ARCO Terminal located in Texas City, Galveston County, Texas. The EA assessed three alternative alignments for outing the pipeline from Bryan Mound past Freeport to a common point near Stratton Ridge. From Stratton Ridge to Texas City, one route segment was considered. All three alternative alignments around Freeport were subsequently determined to be unsuitable for safe construction of a large-diameter buried pipeline, primarily because of crowded pipeline corridors and restricted pipeline rights-of-way (ROW). Therefore, the SPR identified and is herein considering a fourth alternative route segment from Bryan Mound through the City of Freeport, across the Old Brazos River and Dow Barge Canal, and northward to Stratton Ridge. The route is about 11 miles long, and is in or adjacent to existing utility and pipeline right-of-way for about 70% of its length. Crude oil throughput capacity for all cases is 1.10 million barrels per day. This revised EA addresses environmental impacts of construction and operation of the pipeline along the fourth subalternative route segment, as compared to impacts from the three previously considered alternative route segments. 11 refs., 3 figs., 1 tab.

Not Available

1986-02-01T23:59:59.000Z

148

Influences on farmland values in urban Texas counties and the State  

E-Print Network (OSTI)

Farmland values have been a highly researched topic for the past several decades. Interest was spurred initially by increased variability between land values and farm income during the 1950's. Prior research sought to explain value changes through the defining the relationships between land values and an assortment of farm sector and nonfarm sector variables. The foci of the prior studies were mostly rural, homogeneous areas of major agricultural states. Although Texas is considered an important agricultural state with a diversity of related enterprises, its farmland values have generally escaped the scrutiny of review. In 1992, Texas farmland comprised nearly 10 percent of the U.S. aggregated farmland value. This study sought to further knowledge by evaluating previously identified significant land value influences for their importance in Texas. Based on a literature review, proxy variables were specified to represent the influences and were tested for their explanatory ability on Texas land value data. The scope of the study was selected to reflect years that were considered historically interesting for land values in the United States, 1969 through 1994. Urban counties were studied to ascertain if identified influences were important to designated agricultural-use land near metropolitan areas. The results indicate that land supply and demand factors were the most often important influences upon land values, General agricultural economic factors were next in prevalence, followed by farm and nonfarm income factors which were not usually significant to the urban farmland. The study also emphasized that land dedicated to agricultural use in the urban counties was chiefly valued for its abilities to serve investment and consumptive purposes, instead of productive participants need to ascertain local market conditions before making a decision to buy or sell land. Land owners must carefully consider land management choices, as resource issues will increasingly impact land value. Agricultural land owners should evaluate their land primarily in terms of its investment and consumptive potential, instead of its productive qualities.

Clampffer, Blake Robert

1997-01-01T23:59:59.000Z

149

doi:10.1155/2010/975016 Research Article Physician Assistant Distribution in Texas-Mexico Border Counties: Public Health Implications  

E-Print Network (OSTI)

Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. Purpose. Texas Medical Board physician assistant (PA) data were assessed to assist workforce education and planning strategies for PA programs in regions with high percentages of Hispanic populations. Methods. Data were assessed for gender, ethnicity, program attended and current employment addresses within the 14 Texas-Mexico border counties. Results. Of the 329 border county PAs, 227 self-reported as Hispanic (69%), and 53 % were female. Remarkably, 72 % of all Hispanic PAs attended two of the six public Texas PA Programs. Conclusions. The Sullivan Commission report of 2004 concluded that the primary cause of poor public health care for minorities resulted from unequal representation of minorities in the health care professions. Two public Texas PA programs have made substantial contributions to public health care access in poverty-stricken border areas by educating and placing Hispanic PAs within medically underserved communities. 1.

P. Eugene Jones; Karen E. Mulitalo

2010-01-01T23:59:59.000Z

150

Uranium series disequilibrium in the Bargmann property area of Karnes County, Texas  

SciTech Connect

Historical evidence is presented for natural uranium series radioactive disequilibrium in uranium bearing soils in the Bargmann property area of karnes County on the Gulf Coastal Plain of south Texas. The early history of uranium exploration in the area is recounted and records of disequilibrium before milling and mining operations began are given. The property contains an open pit uranium mine associated with a larger ore body. In 1995, the US Department of Energy (DOE) directed Oak Ridge National Laboratory (ORNL) to evaluate the Bargmann tract for the presence of uranium mill tailings (ORNL 1996). There was a possibility that mill tailings had washed onto or blown onto the property from the former tailings piles in quantities that would warrant remediation under the Uranium Mill Tailings Remediation Action Project. Activity ratios illustrating disequilibrium between {sup 226}Ra and {sup 238}U in background soils during 1986 are listed and discussed. Derivations of uranium mass-to-activity conversion factors are covered in detail.

Davidson, J.R.

1998-02-01T23:59:59.000Z

151

Site study plan for Transportation, Deaf Smith County Site, Texas: Preliminary draft  

SciTech Connect

This site study plan describes transportation field studies to be conducted during the characterization of the Deaf Smith County, Texas, site for the US Department of Energy's Salt Repository Project. The studies are needed to identify and assess potential project impacts to transportation infrastructure and systems in the project vicinity and along potential transportation routes to the site across the State of Texas. The studies are also needed to locate and design project transportation facilities, and to evaluate and design impact mitigation. After identifying the transportation information requirements needed to comply with Federal, State, and local regulations and repository program requirements, the site study plan describes the study design and rationale, the field data collection procedures and equipment, the data analysis methods and application of results, the data management strategy, the schedule of field activities, the management of the study, and the study's quality assurance program. The field data collection activities are organized into programs for the characterization of site vicinity rail corridors and highway corridors, characterization of alternative statewide transportation routes, monitoring of site characterization effects on transportation, characterization of aircraft overflight patterns and hazardous material transportation patterns, and assessment of emergency response preparedness along alternative statewide transportation routes. 34 refs., 10 figs., 2 tabs.

1987-06-01T23:59:59.000Z

152

Texas Capital Fund (Texas)  

Energy.gov (U.S. Department of Energy (DOE))

The Texas Capital Fund is designed to promote growth in rural non-entitlement areas, generally defined as cities with less than 50,000 residents or counties with less than 200,000 residents....

153

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

2011 EIS-0444: EPA Notice of Availability of the Draft Environmental Impact Statement Texas Clean Energy Project, Ector County, Texas March 16, 2011 CX-005453: Categorical...

154

TEXAS  

U.S. Energy Information Administration (EIA)

texas lacaff martin tx80 317 393223 oa 1969 lacal willacy tx40 489 393254 on 1965 lacasa stephens tx70 429 393270 ona 1975 lacey hemphill tx95 211 393347 n 1996

155

In-between Southerners: European immigrants and racial violence in Brazos County, Texas  

E-Print Network (OSTI)

Five black men died in Brazos County, Texas, in a series of violent racial incidents in 1896, 1897, and 1900-01. At first glance, nothing seemed exceptional about their deaths. The causes were unremarkable: each of the three episodes was sparked by an alleged assault of a white woman or a respected public official. Furthermore, there was nothing extraordinary about the resulting lynchings and legal execution. They were closely similar to others occuring regularly across the South and seemed to follow a standard script. Nonetheless, a curious twist marked each episode. In each case, European immigrants of different nationalities - first Italian, then Irish, and finally Bohemian -- helped to instigate the violence and played major roles in launching a series of events that culminated in death. Why were these Europeans present in what was by then essentially a Southern racial narrative, and what did they stand to gain? Racial identity and the privileges of whiteness explain the presence of these immigrants in each of the three stories. The racial status of America's foreign-born immigrants was highly ambiguous at the end of the nineteenth century. That uncertainty was acute in the highly racialized South, where eastern and southern European immigrants seemed neither white nor black, but somewhere in between. In the end, Brazos County's European immigrants helped to settle the question themselves by doing what southern white people did, and in some ways, by doing it better. Their in-between racial status enabled these immigrants initially to acquire property and wealth that was generally denied to blacks, and it enabled them to vote and to exercise some degree of political strength. The fastest way to establish whiteness, however, was through violent racial oppression, a method that a number of immigrants did not shun. By participating in the legal and extralegal execution of black men, Brazos County's immigrant groups established their unquestioned whiteness and an insider status unattainable to African-Americans. As the twentieth century wore on, it became apparent that the real outsiders in Brazos County were not the foreign-born, but those who had always been on the outside, the African-Americans.

Nevels, Cynthia Margaret Skove

2003-01-01T23:59:59.000Z

156

A microwear study of Clovis blades from the Gault site, Bell County, Texas  

E-Print Network (OSTI)

Prehistoric quarries in America are poorly understood and thus problematical to take into account when making inferences about past behavior. A microwear analysis of Clovis blades from the 2000 Texas A&M University excavations at the Gault site (41BL323), located in southern Bell County, Texas, provided a window into this problem. Texas A&M excavations on the site produced an extraordinarily large number of Clovis artifacts in two bounded geologic units, 3a and 3b. Included in the artifact types are blades, specialized elongate flakes associated with a core and blade technology. In conducting a microwear analysis of the Clovis blades from Gault, I proposed the following questions: (1) were the Clovis blades utilized at Gault?; (2) is there a difference in the use-wear patterns of Clovis blades from the geological units 3a and 3b?; and (3) is Gault, as a quarry/workshop site, a place to just obtain raw materials or did it also serve as a craft site? Observations from experiments, stereomicroscope analysis, compound microscope analysis, and SEM/EDS analysis led to answers for two research questions: (1) blades were used at Gault and (2) there is a difference between Clovis units 3a and 3b. Eight Clovis 3a blades, or 3.0% of the total Clovis 3a blade/blade fragment population (n=264), exhibit use-wear. Six Clovis 3b blades, 3.3% of the total Clovis 3b blade/blade fragment population (n=182), exhibit use-wear. In general, Clovis 3b blades were used on harder contact materials (wood to bone) than those in Clovis Unit 3a (softer contact materials similar to grass, sinew, and rawhide). The function(s) of quarries and quarry-related workshops were interpreted by William Henry Holmes as a place to obtain raw materials, while Kirk Bryan interpreted them as a place to bring other materials to work in craft activities. Following the microwear analysis of Clovis blades/blade fragments at Gault, I compared Gault to three other Paleoindian quarry-workshop sites (Wells Creek, Dutchess Quarry, and West Athens Hill). My intent is to provide supplemental data for the consideration when applying Holmes and Bryans respective hypotheses.

Minchak, Scott Alan

2007-08-01T23:59:59.000Z

157

Blood meal host preferences of Culex salinarius Coquillett (Diptera : culicidae) in Chambers County, Texas  

E-Print Network (OSTI)

Bloodmeal host preferences were assessed for Culex salinarius populations occurring along the upper Gulf Coast region of East Texas. Over a one-year period beginning in September 1991, blood-engorged female Cx. salinarius specimens were collected on a monthly basis from three field sites in Chambers County, TX. The source of blood contained in each specimen was determined using a modified precipitin test. The results were used to calculate seasonal foraging ratios for mosquito populations sampled at each site. No noticeable changes in bloodmeal host preferences occurred for Cx. salinarius populations sampled at the coastal marsh site during the study period. Mammals were the primary sources of bloodmeals for these populations, with most mosquitoes collected having fed on cattle. There was an increase in specimens testing positive for avian blood during winter (Dec.-Feb.) commensurate with the arrival of migratory goose populations in the vicinity. The overall foraging ratio, however, did not change. Culex salinarius populations sampled at the upper marsh site also demonstrated a preference for mammalian blood throughout the year. However, forage ratios indicated these populations varied in the mammals upon which they fed, with a number of specimens having fed on armadillos. Cx. salinarius populations sampled at the up-county site demonstrated greater tendency to select birds as bloodmeal sources. Mosquito specimens at this site tested positive for either passeriiform or ciconiiform birds, with a few specimens testing positive for rabbits and cattle. A preference was shown for ciconiiform birds during the spring (March-May). During the rest of the year, passeriiform birds served more as a source of bloodmeals for Cx. salinarius populations. Forage ratios indicated the use of passeriiform birds was not a function of preference, but rather a result of these birds being abundant at the up-county site. Results of this study substantiate earlier findings that Cx. salinarius females will use both mammals and birds as sources of bloodmeals. Females of this species are generalistic feeders and will utilize hosts that are in greatest abundance or which require the least amount of energy on the part of the mosquito to acquire.

Grieco, John Paul

1994-01-01T23:59:59.000Z

158

Depositional history of Lower Permian (Wolfcampian-Leonardian) carbonate buildups, Midland Basin, Upton County, Texas  

E-Print Network (OSTI)

A north-south oriented trend of Wolfcampian-Leonardian carbonate buildups is located in the southwestern Midland Basin, Upton County, Texas. The buildup trend is located west of the eastern faulted margin of the Central Basin Platform and north of the Ozona Arch. This trend was deposited during late Paleozoic time, just after major uplift of the Central Basin Platform and as the Midland Basin subsided. Chevron U.S.A. Production Company has actively explored for petroleum in the buildup trend since the early 1980s and loaned their data set to Texas A&M University for this study. The carbonate buildups lie stratigraphically within the Eddleman and Amacker formations. The Eddleman (middle Wolfcampian (PW-2)-late Wolfcampian (PW-3)) and smacker (early Leonardian (PL-1)-early middle Leonardian (PL-2-A)) formations are composed of varying amounts of shallow-water skeletal limestones, matrix-supported limestones, lithoclastic facies, and minor boundstone facies. Dominant grain types include dasycladacean green algae, Tubiphytes, phylloid algae, crinoids, fusulinids, foraminifera, and coated grains. Carbonate deposition begins during lowstand times within or just below wave base in a low energy environment. Separating the two carbonate units is a basibal dark-colored calcareous shale known informally as the Twenty-one formation (late Wolfcampian) that was deposited during a rapid relative sea-level rise. The Tippett shale overlies the Amacker formation and consists of transgressive, basibal, dark-colored calcareous shale that terminated carbonate deposition in the southwestern Midland Basin during early middle Leonardian time. Two basic types of carbonate buildups, skeletal-sand and carbonate-debris, have been identified in this interval. The buildups formed on a ramp-like depositional profile with subtle paleobathymetric highs and lows that were created by mostly post-strewn (middle Pennsylvanian) deformation. The importance of the paleohighs and lows is that the cleaner skeletal-sand buildups initiated growth within the paleolows, and the carbonate-debris buildups (largely sediment gravity-flow deposits) were deposited on paleohighs. The skeletal-sand buildups created synoptic relief during Leonardian time that forced sediment gravity-flows to move between the buildups. This resulted in the abrupt lateral facies transitions within the Eddleman-Amacker interval. Understanding the depositional history of this carbonate buildup trend is important for establishing models for carbonate deposition in the southwestern Midland Basin, where active deformation, rapid subsidence, and major sea-level fluctuations influenced sedimentation.

Merriam, Catherine O'Hara

1999-01-01T23:59:59.000Z

159

The status of resistance in Culex quinquefasciatus say (Diptera: culicidae) populations in Brazos and Harris Counties, Texas  

E-Print Network (OSTI)

In 2002, West Nile virus was isolated for the first time in Harris County, Texas. The subsequent epidemic led the Harris County Mosquito Control Division to initiate an extensive spraying operation to suppress infected adult mosquitoes. The control program was aimed at the predominate disease-carrying mosquito for the southern United States, Culex quinquefasciatus Say. With the increase of insecticide pressure on the mosquito populations, the possibility of resistance was brought into question. A three year study using a vial bioassay test was conducted in Harris (2004-2005) and Brazos (2005-2006) counties to determine the resistance status of Cx. quinquefasciatus to the six chemicals (malathion, naled, resmethrin, permethrin, sumithrin, and pyrethrum) used most frequently in adult mosquito control programs. The resistance ratios acquired from the vial bioassay tests were mapped onto shapefiles for Harris and Brazos counties, which revealed clustering of areas with pyrethroid resistance mosquito populations in the northeastern, southeastern, and southwestern corners of Loop 610 in Harris County. An additional six-month preliminary study, involving six operational areas in Harris County and three in Brazos County, was conducted, demonstrating only minor fluctuations in the monthly resistance ratios occurring in both counties in 2005. A significant correlation was documented between the two years of resistance ratios for mosquitoes to the three pyrethroids in Harris County and all the insecticides except pyrethrum in Brazos County. A significant relationship was also found between the resmethrin resistance ratios and the number of spray events performed during the previous year and the malathion resistance ratios with the insecticide treatments conducted in the same year. The correlation analyses provide data used to predict areas where resistance can develop in the mosquito population, thus providing the control agency more data to plan future control tactics. The overall analysis indicated that Harris County has localized pockets of resistant mosquitoes; but, on a whole, it does not seem to have widespread resistance in its mosquito populations. The only resistance that was detected was in the mosquitoes tested against the three pyrethroids. Mosquitoes in Brazos County, which has no organized mosquito control, demonstrated county-wide susceptibility to all six insecticides tested.

Johnsen, Mark Miller

2007-05-01T23:59:59.000Z

160

TEXAS  

NLE Websites -- All DOE Office Websites (Extended Search)

TEXAS TEXAS PARKS & WILDLIFE Life's better outside.(tm) Commissioners Peter M. Holt Chairman San Antonio T. Dan friedkin Vice-Chairman Houston Mark E. Bivins Amarillo J. Robert Brown EIPaso Ralph H. Duggins fort Worth Antonio Falcon, M.D. Rio Grande City Karen J. Hixon San Antonio Margaret Martin Boerne John D. Parker Lufkin Lee M. Bass Chairman-Emeritus fort Worth Carter P. Smith Executive Director July 20,2009 James Ray Engineering & Environmental Management U.S. Department of Energy P.O. Box 30030 Amarillo, TX 79120 Dear Mr. Ray: This letter authorizes you and B&W Pantex employees Scott McLaughlin, Ken Nicholson, Kevin Rutledge, Todd Mahlin, Mike Payne, Lee Read, Nicholas Willaims and Monty Schoenhals to possess for transport and release on the Pantex

Note: This page contains sample records for the topic "johnson county texas" from the National Library of EnergyBeta (NLEBeta).
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161

Structural characterization of the Emperor and Halley fields, Winkler County, West Texas  

E-Print Network (OSTI)

The Halley and Emperor fields, Winkler County, West Texas, are located along the western margin of the Central Basin Platform (CBP), a late Paleozoic fault-bounded structural high in the Permian Basin. Well data, regional 2D seismic lines, and a 3D seismic data set were used to develop a detailed structural and stratigraphic interpretation for the area. Variance volume attributes were derived from the 3D seismic data, which improved imaging of subsurface features. The Halley and Emperor fields are situated over asymmetric anticlines with short steeper limbs that are faulted by steeply dipping reverse faults with a component of right-lateral strike-slip displacement. The orientation of the fold axes and faults is NNW-SSE, which is parallel to the overall trend of the CBP's western margin. Deformation occurred during late Mississippian to early Leonardian (Early Permian) time. The CBP can be subdivided into two major blocks or tectonic domains: the Andector Block to the north and the Fort Stockton Block to the south. These blocks were located between an inferred right-lateral mega-shear, which forced the Andector and Fort Stockton blocks to undergo clockwise rotation. A left-lateral shear zone must have existed along the E-W fault boundary between the Fort Stockton and Andector blocks, in order to accommodate clockwise rotation of the blocks. The Halley structure is situated at the southwestern corner of the Andector Block and shows evidence of younger middle Pennsylvanian to middle Leonardian left-lateral strike-slip deformation. In contrast, deformation along the Emperor structure to the north had ceased by late Pennsylvanian time, as indicated by the age of strata that onlap the structure and fault penetration patterns.

Leone, John Vincent

2001-01-01T23:59:59.000Z

162

Water table recovery in a reclaimed surface lignite mine, Grimes County, Texas  

E-Print Network (OSTI)

Water table recovery in four reclaimed mine blocks containing replaced overburden has been monitored at Gibbons Creek Lignite Mine in Grimes County, Texas since 1986. Recovery analysis was conducted based on data recorded at 27 wells installed in the reclaimed land and 23 wells installed in adjacent unmined land. It was found that water table recovery in reclaimed mine blocks is predictable: recovery is an exponential function of time and may be described by the following equation: Ew = RC log (t) + Eo where Ew equals any water table elevation above the mine floor to which recovery has occurred over the time, t, transpired between the time recovery began to the time Ew is attained. The constant Eo is the y-intercept which approximates the water table elevation at the beginning time of recovery, to referenced from the time of spoil replacement. The Recovery Coefficient (RC) is the average slope of the recovery curve. RC is proportional to inflow rate and the magnitude (potential saturated thickness) of water table recovery. As RC increases, recovery rate and/or magnitude increases. If recovery is uniform with respect to mine floor elevation, RC distributions for wells in a mine block can be standardized with respect to the mine block dimensions such that one RC value is attained for each mine block. RC is controlled by the complex interrelationships of several factors which may be described by the following factorial equation: RC= f (MD, HS, HP, MB, S 99 where MD = Mine block Dimensions, HS = Hydrostratigraphic Setting, HP = Hydraulic Properties of the spoil, MB = Moisture Balance for the mine area, and SW = Surface Water contribution to spoil resaturation. Based on the analyses the following conclusions were made pertaining to water table recovery at Gibbons Creek Lignite Mine: 1) rate of recovery does not appear to be controlled by the amount of sand in the pre-mine overburden, 2) surface water impoundments do not significantly recharge the mine blocks, 3) water table drawdown during mining can impact the local water table down-gradient of the mined land, 4) mining in several locations over an area composed of fluvial-deltaic sediments forces hydraulic connection of many of the stratigraphic units producing an unconfined water table aquifer from the pre-mine confined ground-water systems.

Peace, Kelley H.

1995-01-01T23:59:59.000Z

163

Educational programs of the Texas AgriLife Extension Service are open to all people without regard to race, color, sex, disability, religion, age, or national origin. The Texas A&M University System, U.S. Department of Agriculture, and the County Commissi  

E-Print Network (OSTI)

Educational programs of the Texas AgriLife Extension Service are open to all people without regard to race, color, sex, disability, religion, age, or national origin. The Texas A&M University System, U.S. Department of Agriculture, and the County Commissioners Courts of Texas Cooperating. What is Walk Across

Wilkins, Neal

164

North and west central Texas. Mitchell EOR (enhanced oil recovery) projects yield tertiary oil in Wise and Jack counties  

SciTech Connect

An enhanced oil recovery project utilizing a miscible LPG process provides Mitchell Energy and Development Corp. engineers with a springboard for other miscible flood projects while yielding incremental tertiary oil that otherwise would remain in the ground. The LPG flood project is in the Alvord (3,000-ft Strawn) Unit in Wise County, Texas. The field had been waterflooded for 14 yr, and was producing near its economic limit under waterflood, the alternative to starting a tertiary project would have been to abandon the field. The LPG flood process was chosen because liquefied petroleum gases are miscible with oil at the low pressures that must be maintained in shallow reservoirs such as the Alvord Strawn. Propane was determined to be the suitable LPG for the project because of its availability and ease of handling.

Mickey, V.

1982-09-01T23:59:59.000Z

165

Harris County- Green Building Tax Abatement for New Commercial Construction (Texas)  

Energy.gov (U.S. Department of Energy (DOE))

In 2008, the Harris County Commissioners Court adopted guidelines for partial tax abatements for new construction of commercial LEED-certified buildings. The tax abatement was renewed in 2009, and...

166

Public health assessment for Rockwool Industries, Belton, Bell County, Texas, Region 6, CERCLIS number TXD066379645. Final report  

SciTech Connect

The Rockwool Industries, Inc. (RWI) National Priorities List site is a 100 acre site one-mile east of downtown Belton in Bell County, Texas. The Facility manufactured two types of mineral wool insulation: Blow wool and batt wool. Three main contaminant source areas have been identified at the site. Source 1, in the middle portion of the site, includes contaminated soil associated with the South Shot Pile. Source 2, in the northern portion of the site, includes contaminated soils associated with the Cemetery Shot Pile. Source 3, in the northwest portion of the site includes contaminated soils associated with the Cemetery Shot Pile. The primary waste types at the site include spent iron shot and baghouse dust. Secondary waste types include boiler blowdown water, stormwater runoff, recovered groundwater, and bricks. The Texas Department of Health (TDH) and the Agency for Toxic Substances and Disease Registry (ATSDR) evaluated the environmental information available for the site and identified several exposure situations for evaluation. These exposure situations include possible contact with site contaminants in the soil, surface water, sediment, and groundwater. The potential for exposure to site contaminants through the food chain was also examined. A brief review of the evaluation, organized by hazard category, is presented.

NONE

1999-08-03T23:59:59.000Z

167

North Central Texas Council of Governments North Central Texas  

E-Print Network (OSTI)

North Central Texas Council of Governments North Central Texas Thinking Ahead Donna Coggeshall North Central Texas Council of Governments #12;North Central Texas Council of Governments Thinking Ahead are for the 12-county MPA #12;North Central Texas Council of Governments Thinking Ahead Development Form #12

Texas at Arlington, University of

168

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Carbon Capture and Sequestration Project, Lake Charles, Louisiana and Brazoria County, Texas April 25, 2013 EA-1939: Finding of No Significant Impact Center for Commercialization...

169

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

November 18, 2010 CX-004521: Categorical Exclusion Determination County of Travis, Texas 700 Lavaca Street Building Retrofit Project CX(s) Applied: B5.1 Date: 11182010...

170

Geopressured-geothermal drilling and testing plan. General Crude Oil--Dept. of Energy Pleasant Bayou No. 1 well, Brazoria County, Texas  

DOE Green Energy (OSTI)

As a result of geopressured resource assessment studies in the Gulf Coast region, the Brazoria fairway, located in Brazoria County, Texas was determined to be an optimum area for additional studies. A plan is presented for drilling, completion, and testing of one geopressured-geothermal well and two disposal wells in Brazoria County, Texas. The objectives of the well drilling and testing program are to determine the following parameters: reservoir permeability, porosity, thickness, rock material properties, depth, temperature, and pressure; reservoir fluid content, specific gravity, resistivity, viscosity, and hydrocarbons in solution; reservoir fluid production rates, pressure, temperature, production decline, and pressure decline; geopressured well and surface equipment design requirements for high-volume production and possible sand production; specific equipment design for surface operations, hydrocarbons distribution, and effluent disposal; and possibilities of reservoir compaction and/or surface subsidence. (JGB)

Not Available

1978-05-01T23:59:59.000Z

171

Reservoir characterization of Yates Formation (Permian, Guadalupian), South Ward field, Ward County, Texas  

E-Print Network (OSTI)

The Yates Formation is a prominent hydrocarbon producing unit in the Permian Basin of west Texas. Production is predominantly from very fine grained sandstones and siltstones that are interbedded with carbonates. The producing clastics have northwest-southeast trend in west Texas and roughly an east-west trend in New Mexico. The present work focuses on the Yates reservoirs of South Ward field in west Texas. The main objective of this thesis is to examine the clastic reservoirs at pore scale, facies scale and at field scale. Yates facies include: (1) fine grained yellowish well sorted sandstones with poor cementation; (2) very fine grained, gray, moderately sorted and ripple laminated sandstone; (2a) very fine grained, gray, bioturbated and massive sandstone; (3) very fine grained and silty, reddish silty sandstone, laminated and typically anhydrite cemented; (4) silty to very fine grained, gray with displacive anhydrite nodular cement; (5) siltstone, dark gray to black, compact and laminated, with pyrite and salt pits; (6) dolostones with predominantly mudstones and wackestones. Sandstones are sub-arkosic and differ in matrix and cement composition. Depositional environments of the clastics facies vary from shallow marine to continental, eolian and fluvial. Carbonates are restricted subtidal to supratidal shelf deposits. The facies-dependent reservoir rocks were ranked by reservoir quality from the highest (o = 20-30%; k = 100-250md) to the lowest (o = < 4% to; k =

Dronamraju, Sharma

1997-01-01T23:59:59.000Z

172

Geologic and Engineering Characterization of East Ford Field, Reeves County, Texas  

SciTech Connect

The objective of this Class III project is to demonstrate that detailed reservoir characterization of slope and basin clastic reservoirs in sandstones of the Delaware Mountain Group in the Delaware Basin of West Texas and New Mexico is a cost-effective way to recover a higher percentage of the original oil in place through geologically based field development. The project focused on reservoir characterization of the East Ford unit, a representative Delaware Mountain Group field that produces from the upper Bell Canyon Formation (Ramsey Sandstone). The field, discovered in 1960, is operated by Oral Petco, Inc., as the East Ford unit: it contained an estimated 18.4 million barrels (MMbbl) of original oil in place.

Dutton, Shirley P.; Flanders, William A.; Guzman, Jose I.; Zirczy, Helena

1999-08-16T23:59:59.000Z

173

County  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Pine County Pine County White Pine County Board of County Commissioners Board of County Commissioners February 10, 1998 W. Eric J. Fygi U.S. Department of Energy Office of General Counsel GC-52 1000 Independence Avenue SW Washington, DC 20585 Subject: Department of Energy (DOE) Price-Anderson Act Comments from White Pine County, Nevada Dear Mr. Fygi: Thank you for providing White Pine County with the opportunity to comment concerning the continuation or modifications of the provisions of the Price-Anderson Act. We understand that these comments will be used to assist the Department of Energy in preparing a required report to Congress. You will note in reviewing our comments that the views of many "Affected Units of Government" in Nevada are similar to each other and that we have worked together in developing

174

Health assessment for Texarkana Wood Preserving Company, Texarkana, Bowie County, Texas, Region 6. CERCLIS No. TXD008056152. Addendum. Final report  

SciTech Connect

The Texarkana Wood Preserving Company (TWPC) is a National Priorities List site located in northeastern Texas, at the southern extremity of the City of Texarkana in Bowie County. The TWPC site has been used for various lumber-related activities since the early 1900s and for creosoting operations since the early 1950s. Contaminated soils, groundwater, surface water, and surface water sediments have been detected on and off of the TWPC site. The primary contaminants of concern are polycyclic aromatic hydrocarbons, pentachlorophenol, chlorinated dibenzodioxins and chlorinated dibenzofurans. The population at greatest risk of exposure to these contaminants are on-site workers engaged in remedial activities. There are currently no residences or businesses located immediately adjacent to the site and no documentation that contaminated groundwater is being used for potable purposes. The Texarkana Wood Preserving Company site has been evaluated by the Agency for Toxic Substances and Disease Registry (ATSDR) Health Activities Recommendation Panel (HARP) for appropriate follow-up with respect to health activities.

Not Available

1992-05-11T23:59:59.000Z

175

Environmental assessment of the brine pipeline replacement for the Strategic Petroleum Reserve Bryan Mound Facility in Brazoria County, Texas  

SciTech Connect

The Department of Energy (DOE) has prepared an environmental assessment (EA), DOE/EA-0804, for the proposed replacement of a deteriorated brine disposal pipeline from the Strategic Petroleum Reserve (SPR) Bryan Mound storage facility in Brazoria County, Texas, into the Gulf of Mexico. In addition, the ocean discharge outfall would be moved shoreward by locating the brine diffuser at the end of the pipeline 3.5 miles offshore at a minimum depth of 30 feet. The action would occur in a floodplain and wetlands; therefore, a floodplain/wetlands assessment has been prepared in conjunction with this EA. Based on the analyses in the EA, DOE has determined that the proposed action is not a major Federal action significantly affecting the quality of the human environment within the meaning of the National Environmental Policy Act (NEPA) of 1969 (42 USC. 4321, et seg.). Therefore, the preparation of an Environmental Impact Statement (EIS) is not required, and the Department is issuing this Finding of No Significant Impact (FONSI). This FONSI also includes a Floodplain Statement of Findings in accordance with 10 CFR Part 1022.

Not Available

1993-09-01T23:59:59.000Z

176

Harris County - Green Building Tax Abatement for New Commercial...  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Harris County - Green Building Tax Abatement for New Commercial Construction (Texas) Harris County - Green Building Tax Abatement for New Commercial Construction (Texas) < Back...

177

The Relationship between Land Use and Temperature Change in Dallas County, Texas  

E-Print Network (OSTI)

This study examines the relationship between land use and temperature change in Dallas County, TX. The purpose of this research is to analyze the relationship between temperature and land use and to identify the primary factors contributing to the formation of urban heat islands based on different categories of land use. Specifically, this research analyzes the elements that contribute to the urban heat island effect in Dallas County using temperature data provided by remote sensing imagery and parcel-based land use data using Geographic Information System (GIS) technique and a correlation analysis method, which was employed to analyze the relationship between temperature and land use. The results of this study showed that every land use category has different temperature averages and those patterns were observed similarly in both 2000 and 2005. Parking, airport, commercial, industrial, and residential areas have relatively high temperatures. In contrast, water, undeveloped area and parks showed relatively low temperatures. Another major finding was ratio of land use composition affected the temperature of census tracts. Correlation analyses of land use and temperature in 2000 and 2005 indicate that various types of land use categories have significant relationships with temperature. Among them commercial, industrial, residential, parking, and infrastructure, are positively associated with temperature, while undeveloped, parks, water, and dedicated areas are negatively associated with temperature. Areas with a high ratio of commercial use showed the highest and undeveloped areas showed the lowest relationship. Furthermore, through the analysis of the relationship between land use and temperature change for five years (2000-2005), this study finds that temperature change depends on the ratio of each land use category change. The results of this study can help local planning and policy decisions which are related to urban land use planning concerning temperature change such as zoning, environmental regulations and open space preservation.

Kim, Hee Ju

2009-08-01T23:59:59.000Z

178

An ecological study examining the correlation of end-stage renal disease and ground water heavy metal content in Texas counties  

E-Print Network (OSTI)

An ecological study was conducted to examine the correlation of end-stage renal disease (ESRD) and the ground water heavy metal level of lead, arsenic, cadmium, mercury and the cumulative level of all four metals in Texas counties. The heavy meal dab was collected from the United States Geologic Survey (USGS) measurement and covered the twenty-one year span 1970- 1990. The ESRD data was gathered from the Texas Department of Health Kidney Program ESRD Registry for the five-year span 1988-1992. This registry included more than 99% of incident ESRD cases over the same time period. The 1990 U.S. Census data was used to estimate county population by age, race and sex. Exposure was defined as residence in a county with ground water measurements that fell in the highest quartile for each metal (mercury 0.297ug/, arsenic 3.216ug/l, lead 4.685ug/l, cadmium 1.423ug/l, cumulative metal level 8.911ug/l). Outcome was defined as an incident case of ESRD between the years 1988-1992 and examined as five-year incidence of ESRD per 10,000 persons. Among 254 Texas counties, 52 had at least 7 years of metal measurements for lead and cadmium, 51 counties had at least 7 years of metal measurements for arsenic and mercury and 50 counties had 7 years of measurements for all four metals. Linear and logistic regression procedures were carried out to examine the relationship between heavy metal ground water levels and incidence of ESRD. None of the metals demonstrated a statistically significant positive relationship with five-year incidence of ESRD per 10,000 persons. Counties with high levels of heavy metals did not indicate an increased odds of having a five-year ESRD incidence per 10,000 persons above the 1988-1992 state average. The percentage of Black or Hispanic persons in a county was a positive predictor of increased five-year incidence of ESRD per 10,000 persons.

Bishop, Scott Alan

1999-01-01T23:59:59.000Z

179

Mineralogy and Geochemistry of Soils of Ultramafic Origin from the Great Dyke, Zimbabwe and Gillespie County, Texas  

E-Print Network (OSTI)

Although soils developed from ultramafic parent materials have significance to agriculture, ecology and health, their bio-geochemistry is poorly understood. The mineralogical and bio-geochemistry of soils formed from the ultramafic parent materials of the Great Dyke, Zimbabwe and Gillespie County, Texas was investigated. The objectives were to determine the mineralogical and bio-geochemical properties of the soils in order to assess the potential impact and challenges to agriculture, and environmental quality. Soil samples were taken from the crest, shoulder, footslope and the toeslope. Chemical analyses were performed by nuclear and spectroscopic techniques. Mineral characterization was conducted by x-ray diffraction (XRD) and spectroscopic techniques. Microbial whole-community structure was determined by the fatty acid methyl esters (FAME) technique. The results indicate wide chemical and mineralogical compositions among the studied sites. The soils contain relatively high concentrations of heavy metals (some sites contain Cr(VI)), but low levels of K and Ca. The highest concentrations of trace metal were associated with chromite, Fe oxides and serpentinite. The concentrations of Mg were higher than those of Ca and varied between Zimbabwe and Texas soils largely due to the parent materials. Unique to these soils is the occurrence of talc, serpentine, chlorite, Fe-rich smectite, amphiboles, pyroxenes, Fe and Cr oxides in relatively large amounts. These soils also lack micas and have neglible amounts of kaolinite and feldspars. Palygorskite and serpentine occurred in specific soil horizons and at specific landscape positions. FAME profiles indicate that the soil microbial community structure is predominantly bacteria and fungi (including arbuscular mycorrhiza fungi) at each landscape position across the transect. Biomarkers for actinomycetes were undetectable. The proportions of Gram-positive bacteria were higher than those of the Gram-negative bacteria. Very low levels of nutrients (Ca and K), higher Mg/Ca molar ratios, and the relatively high concentrations of heavy metals in these soils impact agricultural productivity. High concentrations of heavy metals, the presence of the Cr(VI) as well as its great potential to form in these soils might impact microbial activity and environmental quality. The occurrence of fibrous minerals (e.g serpentine and amphiboles) in these soils will likely impact human health.

Bangira, Courage

2010-12-01T23:59:59.000Z

180

Nesting ecology of dickcissels on reclaimed surface-mined lands in Freestone County, Texas  

E-Print Network (OSTI)

Surface mining and subsequent reclamation often results in the establishment of large areas of grassland that can benefit wildlife. Grasslands have declined substantially over the last 150 years, resulting in declines of many grassland birds. The dickcissel (Spiza americana), a neotropical migrant, is one such bird whose numbers have declined in the last 30 years due to habitat loss, increased nest predation and parasitism, and over harvest (lethally controlled as an agricultural pest on its wintering range in Central and South America). Reclaimed surface-mined lands have been documented to provide important breeding habitat for dickcissels in the United States, emphasizing the importance of reclamation efforts. Objectives were to understand specific aspects of dickcissel nesting ecology (i.e., nest-site selection, nest success, and nest parasitism, and identification of nest predators) on 2 spatial scales on TXU Energy?s Big Brown Mine, near Fairfield, Texas, and to subsequently provide TXU Energy with recommendations to improve reclaimed areas as breeding habitat for dickcissels. I examined the influence of nest-site vegetation characteristics and the effects of field-level spatial factors on dickcissel nesting ecology on 2 sites reclaimed as wildlife habitat. Additionally, I developed a novel technique to identify predators at active nests during the 2003 field season. During 2002?2003, 119 nests were monitored. On smaller spatial scales, dickcissels were likely to select nest-sites with low vegetation, high densities of bunchgrasses and tall forbs, and areas with higher clover content. Probability of nest success increased with nest heights and vegetation heights above the nest, characteristics associated with woody nesting substrates. Woody nesting substrates were selected and bunchgrasses were avoided. Oak (Quercus spp.) saplings remained an important nesting substrate throughout the breeding season. On a larger scale, nest-site selection was likely to occur farther from wooded riparian areas and closer to recently-reclaimed areas. Nest parasitism was likely to occur near roads and wooded riparian areas. Results suggest reclaimed areas could be improved by planting more bunchgrasses, tall forbs (e.g., curly-cup gumweed [Grindelia squarrosa] and sunflower [Helianthus spp.]), clover (Trifolium spp.), and oaks (a preferred nesting substrate associated with higher survival rates). Larger-scale analysis suggests that larger tracts of wildlife areas should be created with wooded riparian areas comprising a minimal portion of a field?s edge.

Dixon, Thomas Pingul

2004-12-01T23:59:59.000Z

Note: This page contains sample records for the topic "johnson county texas" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


181

An Economic Analysis of Agricultural Soil Loss in Mitchell County, Texas  

E-Print Network (OSTI)

The Federal Water Pollution Control Act Amendments of 1972, Public Law 92-500, established a national goal of eliminating the discharge of pollutants into the nation's waterways by 1985. As a step toward that goal an interim water quality standard of "fishable, swimmable waters nationwide" by July 1, 1983 was set. Under section 208 of this law, each state was required to establish a "continuing planning process" to define controls for agricultural nonpoint sources of water pollution. Section 208 calls for the development of state and area-wide water quality management plans. The plans are to include "a process to (i) identify if appropriate, agriculturally and silviculturally related non-point sources of pollution, including runoff from manure disposal areas, and from land used for livestock and crop production, and (ii) set forth procedures and methods (including land use requirements) to control to the extent feasible such sources." In an earlier group of technical reports (TR 87, 88, 90, 93) in this series a model was developed to measure the net social benefits from controlling agricultural sediment given various policy options. This was done by contrasting benefits to be gained from reducing the sediment load in a watershed against costs involved in achieving that reduction using various voluntary or mandatory policies to accomplish the reduction. It was a major conclusion of these studies that no policy that restricted soil loss to less than that which was economically desirable from the farmers own viewpoint would generate benefits greater than the costs involved. This finding, in the watersheds of major sediment control concern lead to a decision to change the base area for this report to a county instead of a watershed and to only deal with the on-farm consequences of various management practices. These on-farm consequences would include the changes in topsoil loss and the yield losses that result from losing topsoil. Also included are profit levels that could be expected from different management practices and how the present value of a stream of these profits would vary over different planning horizons.

Reneau, D. R.; Taylor, C. R.; Harris, B. L.

1979-03-01T23:59:59.000Z

182

An Economic Analysis of Agricultural Soil Loss in Crosby County, Texas  

E-Print Network (OSTI)

The Federal Water Pollution Control Act Amendments of 1972, Public Law 92-500, established a national goal of eliminating the discharge of pollutants into the nation's waterways by 1985. As a step toward that goal an interim water quality standard of "fishable, swimmable waters nationwide" by July 1, 1983 was set. Under section 208 of this law, each state was required to establish a "continuing planning process" to define controls for agricultural non-point sources of water pollution. Section 208 calls for the development of state and area-wide water quality management plans. The plans are to include "a process to (i) identify if appropriate, agriculturally and silviculturally related non-point sources of pollution, including runoff from manure disposal areas, and from land used for livestock and crop production, and (ii) set forth procedures and methods (including land use requirements) to control to the extent feasible such sources." In an earlier group of technical reports (TR 87, 88, 90, 93, 94) in this series, a model was developed to measure the net social benefits from controlling agricultural sediment given various policy options. This was done by contrasting benefits to be gained from reducing the sediment load in a watershed against costs involved in achieving that reduction using various voluntary or mandatory policies to accomplish the reduction. It was a major conclusion of these studies that no policy which restricted soil loss to less than that which was economically desirable from the farmers own viewpoint would generate benefits greater than the costs involved. This finding, in the watersheds of major sediment control concern lead to a decision to change the base area for this report to a county instead of a watershed and to only deal with the on-farm consequences of various management practices. These on-farm consequences would include the changes in topsoil loss and the yield losses that result from losing topsoil. Also included are profit levels that could be expected from different management practices and how the present value of a stream of these profits would vary over various planning horizons.

Reneau, D. R.; Taylor, C. R.; Harris, B. L.

1979-05-01T23:59:59.000Z

183

Investigations at the Sloan Site (41 SS 51) a stratified alluvial terrace site in San Saba County, Texas.  

E-Print Network (OSTI)

??A Master's Thesis on excavations and results from Texas Tech Archaeology Field Schools 1993-1996 at the Sloan Site, a stratified alluvial terrace site with a (more)

Butler, Joel Byron

2006-01-01T23:59:59.000Z

184

COUNTY\  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

BOARD OF COUNTY COMMISSIONERS BOARD OF COUNTY COMMISSIONERS ESMERALDA COUNTY, NEVADA MEMBERS STAFF SUSAN W. DUDLEY, CHAIRMAN BEVERLY J. RELYEA GARY O'CONNOR, VICE CHAIRMAN ADMINISTRATIVE ASSISTANT BEN VILJOEN, LIQUOR BOARD (702)485-3406 January 20, 1998 U.S. Department of Energy Office of General Counsel GCS-52 1000 Independence Ave. SW Washington, DC 20585 RE: COMMENT BY ESMERALDA COUNTY, NEVADA CONCERNING THE CONTINUATION OR MODIFICATION OF DOE PRICE-ANDERSON ACT Dear Sirs: The DOE Price-Anderson indemnification is intended to provide coverage for contractors for the benefit of any victims of a nuclear accident or incident or a precautionary evacuation arising from activity under a DOE contracts. The public perception is that if there is a nuclear accident resulting in a dispersal of

185

Paulus, Sokolowski and Sartor (PS&S) & Johnson and Johnson Teaming...  

NLE Websites -- All DOE Office Websites (Extended Search)

(PS&S) & Johnson and Johnson Teaming Profile cover page of document PS&S conducts a Cogeneration Feasibility Study to help Johnson & Johnson improve their facilities' power...

186

Economic Impacts of Controlling Soil-Loss from Silviculture Activities: A Case STudy of Cherokee County, Texas  

E-Print Network (OSTI)

Section 208 of the 1972 Amendments to the Federal Water Pollution Control Act (Public Law 92-500) requires the states to develop plans which: (1) contain processes to identify nonpoint sources of pollution, and (2) set forth procedures and methods to control such sources of pollution to the extent feasible. Among the land use activities which are explicitly identified within Section 208 as potential sources of nonpoint pollution problems is silviculture. Texas, since it contains an estimated 12.5 million acres of commercial forest land (Murphy, 1976), has for some time been actively involved in developing the required planning procedures and materials. This document represents one component of this overall planning process. The "extent feasible" clause of Section 208 can be interpreted as recognizing the need to consider economic tradeoffs in reaching a decision as to what level of control, if any, should be exercised to limit nonpoint source pollution from whatever type of activity. This would seem to be a reasonable interpretation since it would be illogical to envision extending controls to the point that their marginal costs would exceed their marginal benefits. Broadly conceived, the purpose of this investigation has been to make a first approximation of the economic tradeoffs that would be associated with any effort to limit the extent of nonpoint pollution resulting from silvicultural activities in Texas. More specifically the study has sought to achieve the following objectives: 1. To develop a methodology For assessing the economic impacts associated with imposing alternative silvicultural nonpoint source controls at varying intensities. 2. To demonstrate how the methodology could be applied to a specific study area to facilitate decision-making about the economic rationality of imposing controls. As the study plan for this project was developed, choices had to be made regarding the range of potential pollutants to consider, the range of alternative control techniques to consider, and the range of economic impacts to consider. Since the nature of these choices represent limitations on the scope of the project, they should be made explicit from the outset. As regards the range of potential pollutants considered, it is recognized that silvicultural nonpoint source pollution can conceivably assume a variety of forms -- nutrients, chemical, thermal, and so on. Nonetheless, in this investigation sediment is the only potential silvicultural pollutant which has been addressed -- and this only indirectly.1 The focal point of the analysis is on the economic impacts of restricting soil loss (i.e. sheet and rill erosion) which is not directly equivalent to sediment yield. Conversion of soil loss figures to sediment yield figures requires knowledge of an appropriate sediment delivery ratio. While this might appear to be a significant limitation of the study, the investigators are of the opinion that it is not. This conclusion rests upon essentially two facts. First, the bulk of the available evidence pertaining to the potential impacts of silvicultural activities on water quality indicates that in those instances where such activities appear to be creating a problem sediment is generally the potential pollutant of greatest importance. Secondly, sediment yields will bear a constant proportional relationship to soil loss. Indeed, if the study unit used in this investigation had been a physical watershed instead of a county, the analysis could have dealt directly with sediment yields rather than soil loss.2 In turn, if actual sediment yields had been estimated, other potential pollutants could have been introduced into the analysis, if so desired, by the use of appropriate loading functions. As regards the range of alternative control techniques that might conceivably be used to limit silvicultural nonpoint source pollution, this investigation specifically considers four possibilities. These are: (1) a countywide limit on allowable soi

Hickman, C.A.; Jackson, B.D.

1978-03-01T23:59:59.000Z

187

Shane Johnson | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Shane Johnson Shane Johnson About Us Shane Johnson - Deputy Assistant Secretary for Science and Technology Innovation Shane Johnson Mr. Johnson serves as the Deputy Assistant Secretary for Science and Technology Innovation in the Office of Nuclear Energy (NE). He has held numerous senior management positions within NE including: Chief Operating Officer; Acting Director for the Office of Nuclear Energy, Science and Technology; Deputy Director for Technology; Associate Director for Advanced Nuclear Research; and Associate Director for Technology and International Cooperation. Mr. Johnson has been instrumental in launching several Department of Energy initiatives authorized by the nuclear energy provisions of the Energy Policy Act of 2005, including the Nuclear Power 2010 program and the

188

Argonne Staff - Larry Johnson  

NLE Websites -- All DOE Office Websites (Extended Search)

larry johnson larry johnson Larry R. Johnson Director, Transportation Technology R&D Center Argonne Distinguished Fellow Argonne National Laboratory phone: 630/252-5631; fax: 630/252-4211 e-mail: johnson@anl.gov Professional Experience Argonne National Laboratory (1979 - Present) Argonne Distinguished Fellow Director, Transportation Technology R&D Center (1997-Present): Coordinate the Laboratory's transportation research programs, including vehicle systems, engines and emissions research, alternative fuels, advanced batteries, fuel cells, materials, tribology, sensors, and technology assessments. Disseminate technology developments though the quarterly newsletter, TransForum, and the Internet at www.transportation.anl.gov. Director, Center for Transportation Research, Energy Systems Division (1983-2000): Managed the Center's experimental research and assessment activities. Research includes: novel approaches to reduce engine emissions such variable air composition; hybrid vehicle component testing and system modeling; and technology assessments. Developed a major maglev experimental and analysis program at Argonne as the result of initial investigations into the economics of maglev systems. Promoted to Senior Economist in 1991.

189

The Honorable Bernie Johnson  

Office of Legacy Management (LM)

-A&#~ Qlfe p;u\ -A&#~ Qlfe p;u\ - L .- Department of Energy Washington, DC 20585 17 f 1-s 1 :j I, , .i ;:9:j The Honorable Bernie Johnson P.O.'Box 1355 Joplin, Missouri 64802 Dear Mayor Johnson: Secretary of Energy Hazel O'Leary has announced a new approach to openness in the Department of Energy (DOE) and its communications with the public. In support of this initiative, we are pleased to forward the enclosed information related to the Rogers Iron Works Co. site in your jurisdiction that performed work for DOE or its predecessor agencies. This information is provided for your information, use, and retention. DOE's Formerly Utilized Sites Remedial Action Program is responsible for identification of sites used by DOE's predecessor agencies, determining their

190

Optical Johnson noise thermometry  

DOE Patents (OSTI)

This invention is a method and device for direct, non-contact temperature measure of a body. A laser beam is reflected from the surface of the body and detected along with the Planck radiation. The detected signal is analyzed using signal correlation technique to generate an output signal proportional to the Johnson noise introduced into the reflected laser beam as a direct measure of the absolute temperature of the body. 2 figs.

Shepard, R.L.; Blalock, T.V.; Roberts, M.J.

1989-01-30T23:59:59.000Z

191

Reinvestment Zones (Texas)  

Energy.gov (U.S. Department of Energy (DOE))

Reinvestment Zones a local economic development tool used by municipalities and counties throughout the state of Texas. These zones can be created for the purpose of granting local businesses ad...

192

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

System CX(s) Applied: A11, B5.1 Date: 07152010 Location(s): Bexar County, Texas Office(s): Energy Efficiency and Renewable Energy, Golden Field Office July 13, 2010...

193

Tornado Vulnerability in Texas  

Science Conference Proceedings (OSTI)

Tornado vulnerability depends on the incidence of and societal exposure to tornadoes for a particular location. This study assesses the vulnerability of Texas counties to tornadoes using tornado incidence and societal exposure composite scores. ...

Richard W. Dixon; Todd W. Moore

2012-01-01T23:59:59.000Z

194

Johnson Controls ESCO Qualification Sheet  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Johnson Controls ESCO Qualification Sheet DOE Super ESPC Introduction to Johnson Controls Johnson Controls has been a worldwide leader in building controls and efficiency for over 120 years (since 1885). Johnson Controls has developed, designed, installed, financed, measured, verified, operated, maintained, and guaranteed the savings for more than 2,500 projects for our diverse customer base worldwide. Under current Federal ESPC contracts, we have Johnson Controls manages developed and implemented more than 75 projects for various a performance contracting agencies, including the Army, DOE, Air Force, Navy, General Services portfolio in the U.S. of over Administration, Department of Veterans Affairs, Justice Department, $4.3 billion

195

The Texas 'Condom-Rape' Case: Caution Construed as Consent  

E-Print Network (OSTI)

have been raped. The woman in Texas had the presence of mind30, 1992, a Travis County, Texas grand jury comprised ofOF THE CASE Once the Texas case caught the attention of the

da Luz, Carla M.; Weckerly, Pamela C.

1993-01-01T23:59:59.000Z

196

The relevance of the effective school correlates, to alternative education settings, for student in a correctional system, as identified by the teachers and adminstrators in selected charter schools, in Harris County, Texas  

E-Print Network (OSTI)

The State of Texas accepted the Effective School Research model and its correlates as a way of determining whether the states schools are effective. This included all juvenile justice alternative educational facilities. The purpose of the study was to assess the relevance of the Effective School Correlates to alternative educational settings for students in a correctional system as identified by the teachers and administrators in selected charter schools in Harris County, Texas. Secondly, the study was to suggest modification to the Effective School Correlates to make them relevant to an alternative educational setting for students in the correctional system in selected charter schools in Harris County, Texas. The literature revealed a potential lack of fit between the Effective School Correlates as the Key Characteristic of Effective Schools and their relevance to the context of alternative schools for students in the correctional systems. This study led to the postulation that the Effective School Correlates as written may need altering to meet the needs of the specialized correctional school setting. However, it is not clear what shape or direction this alteration would take. Findings of this study indicated that problems existed with the application of the Correlates as they related to the selected Charter Schools in Harris County, Texas. The population size limited the study and caution should be taken not to over-generalize the data.

Cortez-Rucker, Vance

2007-12-01T23:59:59.000Z

197

S. B. 1528 Affidavit State of Texas  

E-Print Network (OSTI)

S. B. 1528 Affidavit State of Texas County of _______________ Before me, the undersigned Notary true and correct. 2. I graduated or will graduate from a Texas high school or received my GED certificate in Texas. 3. I resided in Texas for three years leading up to graduation from high school

Texas at Arlington, University of

198

Johnson\ABBY  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Does Nuclear Insurance Protect Us or the Industry? Does Nuclear Insurance Protect Us or the Industry? by ABBY JOHNSON No-fault insurance for the nuclear power industry has never been a hot issue for Nevadans because we have no nuclear power plants in the state. But with the prospect of the nuclear power industry's toxic leftovers coming our way, it is important to take a close look at the Price-Anderson Act. The Price-Anderson Act indemnifies nuclear power utilities for liability in the event of a nuclear incident. (In Nuclear Regulatory Commission lingo, all accidents are incidents.) The Act uses an insurance pool, with premiums paid by each utility, supplemented by additional pooled utility funds in the event of a

199

The Black Shale Basin of West Texas.  

E-Print Network (OSTI)

??The Black Shale Basin of West Texas covers an area in excess of 21,000 square miles and includes the region from Terrell and Pecos Counties (more)

Cole, Charles Taylor, 1913-

2012-01-01T23:59:59.000Z

200

An integrated study of the Grayburg/San Andres reservoir, Foster and South Cowden fields, Ector County, Texas, Class II  

SciTech Connect

A project to recover economic amounts of oil from a very mature oil field is being conducted by Laguna Petroleum Corporation of Midland, Texas, with partial funding from a U. S. Department of Energy (DOE) grant to study shallow carbonate rock reservoirs. The objectives of the project are to use modern engineering methods to optimize oil field management and to use geological and geophysical data to recover untapped potential within the petroleum reservoirs. The integration of data and techniques from these disciplines has yielded results greater than those achievable without their cooperation. The cost of successfully accomplishing these goals is to be low enough for even small independent operators to afford. This article is a report describing accomplishments for the fiscal year 1998-1999.

Trentham, DGS, Robert C.; Robinson, M.S., William C.; Wider, Kevin; Weinbrandt, Ph.D.,PE, Richard

2000-04-14T23:59:59.000Z

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201

An Integrated Study of the Grayburg/San Andres Reservoir, Foster and South Cowden Fields, Ector County, Texas  

SciTech Connect

A project to recover economic amounts of oil from a very mature oil field is being conducted by Laguna Petroleum Corporation of Midland, Texas, with partial funding from a U. S. Department of Energy grant to study shallow carbonate rock reservoirs. The objectives of the project are to use modern engineering methods to optimize oil field management and to use geological and geophysical data to recover untapped potential within the petroleum reservoirs. The integration of data and techniques from these disciplines has yielded results greater than those achievable without their cooperation. The cost of successfully accomplishing these goals is to be low enough for even small independent operators to afford. This article is a report describing accomplishments for the fiscal year 1997-1998.

Robinson, William C.; Trentham, Robert C.; Widner, Kevin; Wienbrandt, Richard

1999-06-22T23:59:59.000Z

202

Implementing an agricultural water conservation innovation among the urban public: an analysis of the pilot study phase of the San Antonio Evapotranspiration Project--a cooperative effort between the Texas Agricultural Extension Service--Bexar County Offices, Bexar County Master Gardeners, San Antonio Water Systems and Texas A&M University  

E-Print Network (OSTI)

Increasing urbanization in this country continues to present many challenges and opportunities to education and research institutions, agribusiness, and public and private service agencies. These challenges have propelled the invention of countless innovations which, though perhaps originally intended for addressing rural agricultural dilemmas, eventually are transferred into the urban context to address different problems. One such technological innovation, which was originally aimed at addressing a rural agronomic problem, is being put to use in a creative manner in an urban setting. This innovation, first used to determine-nine accurate soil moisture need for semi-arid land crops, is potential-evapotranspiration (PET) data based irrigation scheduling. Allocation of water resources is an environmental issue that has become a regular element in immediate and long-term program agendas of organizations concerned with the future sutainability of agriculture in Bexar county. There is some argument about the wisest uses of it. Most agree, though, and regional studies are supportive, that one of the uses, turf irrigation, without a doubt needs to be managed more wisely. It is estimated that 40% of the municipal water is used to irrigate turf in the summer in San Antonio. Presently, recommendations for efficient application of water to turf, though specific and descriptive, rely ultimately upon the subjective evaluation of the irrigator. There are many lawn watering philosophies, most of which are not water efficient. Each turf variety has different water requirements. There is a profound need for taking the guesswork out of irrigating lawns. The Bexar County Office of the Texas Agricultural Extension Service actively promotes environmental stewardship" in its educational programs (Highlights, 1996). In Bexar County, one important aspect of sound environmental stewardship is to promote water conservation. One way this agency is currently carrying out this particular part of its mission is through a project that uses the evapotranpiration data technology mentioned above and promotes better understanding and application of water conservation measures in urban lawn irrigation practices. The project is a cooperative effort between San Antonio Water System (SAWS), The Texas Agricultural Extension Service in Bexar County, Texas A&M University (Department of Agricultural engineering), and the Bexar County Master Gardeners, Inc. Part of the overall project is a pilot study being conducted to test the best way of applying this water conservation method to irrigate lawns. Participants in this pilot study are residents of San Antonio and the surrounding area who have agreed to follow certain watering and lawncare protocol instructions, in exchange for free lawn fertilizer for the duration of participation, and priority status with Extension Agents when lawncare questions arise. There are many challenges that the project staff and participants must face in implementing this study if it is to be successful and provide adequate data to convince the general public to adopt this innovation. Conclusions regarding the nature and effectiveness of the project include that excellent communication between staff and participants, teamwork among staff and participant leaders, and a knowledge of the principles behind the adoption process during the remainder of the pilot study phase are essential to success of latter phases and effective adoption of this water conservation method on a larger scale. Reactions by participants, who have been involved in the implemetation of this pilot study to date, are encouraging. The positive consequences so far of educating and enabling only a very small group of citizens may indicate the potentially huge impact this project could have on large scale water conservation in Bexar County. iii

Reilly, Laura Lynne

1998-01-01T23:59:59.000Z

203

An investigation of key blow fly (Diptera:Calliphoridae) species of forensic importance occurring in Brazos and Burleson Counties of Central Texas  

E-Print Network (OSTI)

Forensic entomology makes use of an entomologist's knowledge about biology, insect taxonomy, and carrion ecology. This knowledge can be used as a tool to help investigators solve crimes. In order to use entomological information to help solve crimes committed in Texas, a database of pertinent information must be prepared. The two orders of insects that are most commonly used to help establish such things as time of death (Post Mortem Interval), location, and manner of death are Diptera and Coleoptera. Of these orders, blow flies (Diptera:Calliphoridae) are the insects of most importance because they colonize a corpse or carcass first, often within minutes of exposure. Exposed pig carcasses were used to survey the species of blow flies present in Brazos and Burleson Counties. Cynomyopsis (=Cynomya) cadaverina (Townsend), Calliphora vicina (Robineau-Desvoidy), and Calliphora livida (Hall) have proved to be the three most important species to colonize carcasses during the winter and early spring. These are blue bottle flies, and morphologically very similar. The larvae are so similar that taxonomic keys do not distinguish between C. livida and C. vicina. These species of blow flies were chosen for identification using a method involving analysis of their mitochondrial DNA. The results of this study have shown that the species of blow flies in a given geographical area (Brazos and Burleson Counties) differ between seasons and locations, and that analysis of the mtDNA of these flies can be used as a method of identification when morphological methods are unavailable. In addition, some common methods of preservation were tested in order to provide recommendations about how these methods affect the amplification of the mtDNA of preserved specimens.

Tenorio, Felix Mariana

2001-01-01T23:59:59.000Z

204

Regional Super ESPC Saves Energy and Dollars at NASA Johnson Space Center |  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Regional Super ESPC Saves Energy and Dollars at NASA Johnson Space Regional Super ESPC Saves Energy and Dollars at NASA Johnson Space Center Regional Super ESPC Saves Energy and Dollars at NASA Johnson Space Center October 7, 2013 - 1:57pm Addthis Space Shuttle Endeavour, 2002 The NASA Johnson Space Flight Center in Houston is well known for its achievements in the U.S. space program (this 2002 photo shows the Space Shuttle Endeavour on its way to the International Space Station). Overview NASA will save approximately $43 million in facility operations costs over the next 23 years at the Johnson Space Flight Center (JSC) in Houston, Texas, thanks to the largest delivery order signed to date under a Regional Super Energy Savings Performance Contract (Super ESPC). The U. S. Department of Energy's Federal Energy Management Program (FEMP) instituted

205

APPLICATION OF WATER-JET HORIZONTAL DRILLING TECHNOLOGY TO DRILL AND ACIDIZE HORIZONTAL DRAIN HOLES, TEDBIT (SAN ANDRES) FIELD, GAINES COUNTY, TEXAS  

SciTech Connect

The San Andres Formation is one of the major hydrocarbon-producing units in the Permian Basin, with multiple reservoirs contained within the dolomitized subtidal portions of upward shoaling carbonate shelf cycles. The test well is located in Tedbit (San Andres) Field in northeastern Gaines County, Texas, in an area of scattered San Andres production associated with local structural highs. Selected on the basis of geological and historical data, the Oil and Gas Properties Wood No. 1 well is considered to be typical of a large number of San Andres stripper wells in the Permian Basin. Thus, successful completion of horizontal drain holes in this well would demonstrate a widely applicable enhanced recovery technology. Water-jet horizontal drilling is an emerging technology with the potential to provide significant economic benefits in marginal wells. Forecast benefits include lower recompletion costs and improved hydrocarbon recoveries. The technology utilizes water under high pressure, conveyed through small-diameter coiled tubing, to jet horizontal drain holes into producing formations. Testing of this technology was conducted with inconclusive results. Paraffin sludge and mechanical problems were encountered in the wellbore, initially preventing the water-jet tool from reaching the kick-off point. After correcting these problems and attempting to cut a casing window with the water-jet milling assembly, lateral jetting was attempted without success.

Michael W. Rose

2005-09-22T23:59:59.000Z

206

Environmental analysis of geopressured-geothermal prospect areas, De Witt and Colorado counties, Texas. Final report, March 1 - August 31, 1979  

DOE Green Energy (OSTI)

Information collected and analyzed for a preliminary environmental analysis of geopressured geothermal prospect areas in Colorado and DeWitt Counties, Texas is presented. Specific environmental concerns for each geopressured geothermal prospect area are identified and discussed. Approximately 218 km/sup 2/(85 mi/sup 2/) were studied in the vicinity of each prospect area to: (1) conduct an environmental analysis to identify more and less suited areas for geopressured test wells; and (2) provide an environmental data base for future development of geopressured geothermal energy resources. A series of maps and tables are included to illustrate environmental characteristics including: geology, water resources, soils, current land use, vegetation, wildlife, and meteorological characteristics, and additional relevant information on cultural resources, power- and pipelines, and regulatory agencies. A series of transparent overlays at the scale of the original mapping has also been produced for the purposes of identifying and ranking areas of potential conflict between geopressured geothermal development and environmental characteristics. The methodology for ranking suitability of areas within the two prospect areas is discussed in the appendix. (MHR)

Gustavson, T.C.; Reeder, F.S.; Badger, E.A.

1980-02-01T23:59:59.000Z

207

Yeo-Johnson Power Transformations  

E-Print Network (OSTI)

This paper describes an Arc add-in for using the Yeo-Johnson power transformations in place of the Box-Cox power transformations in various places in Arc. 1

Sanford Weisberg

2001-01-01T23:59:59.000Z

208

David Johnson | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

You are here You are here Home » David Johnson About Us David Johnson - Deputy Assistant Secretary for Petroleum Reserves, Office of Fossil Energy Photo of David Johnson David Johnson is the Deputy Assistant Secretary for the Office of Petroleum Reserves in the Office of Fossil Energy. He is responsible for the management and direction of the Strategic Petroleum Reserve, the Northeast Home Heating Oil Reserve and the Naval Petroleum and Oil Shale Reserves programs. The Strategic Petroleum Reserve, which was authorized in 1975, contains over 700 million barrels of crude oil in four Government-owned storages sites along the Gulf Coast. The Northeast Home Heating Oil Reserve, which was created in 2000, contains 2 million barrels of heating oil for winter related shortages in three commercial storage terminals in the northeast

209

Analysis and optimization of gas pipeline networks and surface production facilities for the Waskom Field--Harrison County, Texas  

E-Print Network (OSTI)

This research has developed a computer simulation of the production facilities model of the Waskom Field in order to analyze existing and future production methods. The Waskom Field, located in East Texas, is a redeveloped reservoir sequence that produces primarily natural gas with minor amounts of oil and gas-condensate from the Upper and Lower Cotton Valley Sands as well as Sands in the Travis Peak sequence. The present gas production at Waskom Field averages about 12,000 Mcf/D. We have used data and the current production history to create a model of the surface production facilities, and we will simulate field performance by using a computer simulation package. In particular, all of the field facilities as well as the production history are included in these simulation Surface facilities for the Waskom field include pipelines of varying, sizes, separators, compressors, valves, and production manifolds. After creating and verifying the field model, we determined that the field possesses greater compressor capabilities than it requires. A simulation was performed where by the rental compressor in the Reuben Pierce lease was removed. The computer simulation showed that we can lower the last line pressure to 200 psig from 450 psig (which the operator was eventually able to negotiate) and the remaining compressors can sufficiently compress all of the gas currently produced in the field. Our few additional recommendations are to clean the separators, remove dual separator layouts, and remove several constricting valves that were identified from the simulation.

Pang, Jason Ui-Yong

1995-01-01T23:59:59.000Z

210

Biface reduction and blade manufacture at the Gault site (41bl323): a Clovis occupation in Bell County, Texas  

E-Print Network (OSTI)

This dissertation is a technological study that deals with those techniques employed by the Gault Clovis people in the manufacture of both bifaces and blades. The materials studied were recovered during the 2000 and 2001 field seasons conducted by the Anthropology Department of Texas A&M University. The study involves an analysis that deals with raw material selection, blank production, reduction methods, and problems encountered, and includes a definitive description and metric calculations for each of the various artifact types analyzed. The results are then compared to similar artifact assemblages from known Clovis sites. The conclusions derived from this analysis show that the Gault Clovis people utilized a number of different strategies in both biface and blade reduction. It was found that some of these strategies, previously felt to be restricted to one reductive procedure, were connected and utilized in both procedures. In addition, it was discovered that some techniques thought to be limited to use only within the initial reduction sequence were, in fact, utilized throughout.

Dickens, William A.

2005-12-01T23:59:59.000Z

211

The composition and diagenesis of the Queen Formation (Guadalupian, Permian) at Virey and Moose Queen fields, Midland County, Texas  

E-Print Network (OSTI)

The Permian Basin of West Texas and Eastern New Mexico has been a center of oil and gas exploration since the early 1940s. Hydrocarbon profusion is focused in the shelfal areas of the Permian Basil with one of the most prolific clastic reservoirs being the Queen Formation. The Queen Formation is part of the Artesia Group, a sequence of interbedded shelf carbonates. evaporates, and classics. The first purpose of this thesis is to characterize the facies and petrography of the Queen Formation and its sandstone reservoirs at the Moose and Virey Queen fields. The second purpose is to investigate the depositional and diagenetic processes that control the formation, size and quality of the sandstone reservoirs and non-reservoirs. The Queen Formation at the Moose and Virey Queen Gelds generally consist of feldspathic litharenites to litharenites in a complex sequence of interbreed very fine-grained sandstones, coarse grained milestones, anhydritic very fine-grained sandstones, halitic very fine-grained sandstones. Based upon grain size measurements and petrographic analyses, these sandstones can be classified as well sorted sandflat, saline sandflat, and intertidal sandstones from a fluvial depositional system represented by a sequence of coarsening and finning upward cycles.The primary porosity of all of the sandstones of the Queen Formation was reduced by the precipitation of authigenic clay, the infiltration of mud and the formation of soil structures, and the precipitation of authigenic cements such as halite and anhydrite. Reservoirs were formed in the sandflat facies by the dissolution of cements and labile grains, creating enhanced secondary porosity. This project is just one part of a regional study of the Queen Formation in the Permian Basil which can be added to the extensive database on the Queen sandstones in order to obtain a more accurate delineation of the processes responsible for the deposition of the Queen Formation.

Voncannon, Jennifer Catherine

1999-01-01T23:59:59.000Z

212

Sequence stratigraphic controls of hydrocarbon reservoir architecture - case study of Late Permian (Guadalupian) Queen Formation, Means Field, Andrews County, Texas.  

E-Print Network (OSTI)

The late Permian Queen Formation (115 m thick) is a succession of mixed clastics, carbonates and evaporites deposited in the northeastern margin of Central Basin Platform of the Permian Basin, west Texas, USA. Depositional facies, stacking patterns of cyclic facies associations and statistical correlation of rock property variations define geologic controls on reservoir rock properties. Textural, compositional, petrophysical and diagenetic variations within lithofacies exhibit systematic changes with stratigraphic position, which can be related to base level changes that were controlled by high-frequency, low-amplitude, sea level fluctuations during a greenhouse period. Ten lithofacies record variations in clastic input, shallow marine carbonate production, and evaporate precipitation in sabhkas and salinas. Four different types of lithofacies associations define: (1) transgressive deltaic deposits; (2) upward-shallowing evaporite and carbonate tidal-flat deposits; (3) transgressive beach ridge and sand flat deposits; and (4) upward-shallowing evaporite salina-sabhka deposits. Stacking patterns of lithofacies associations define sixteen depositional cycles that can be grouped into eight cycle sets. Cycle sets in turn are grouped to define two high-frequency sequences. Sequence 1 progresses from fluvial to carbonate tidal flat cycles. Sequence 2 consists of salina-dominated upward-shoaling cycles. Lateral continuity of cycles indicates restricted sedimentation on low-accommodation inner platform areas updip of prograding highstand platform-margin carbonate buildups, and a long-term trend of accommodation decrease. The Queen Formation contains two reservoir types; (1) siliciclastic reservoirs capped by evaporites and (2) layer-cake carbonate reservoirs. Of the four reservoir zones identified, R11 in lowstand fluvial-deltaic deposits has relatively little cement and the best reservoir characters.

Ryu, Changsu

2002-08-01T23:59:59.000Z

213

Strategic Petroleum Reserve Texoma Complex distribution enhancements: Orange and Jefferson Counties, Texas; Calcasieu and Cameron Parishes, Louisiana: Environmental assessment  

Science Conference Proceedings (OSTI)

The Department of Energy is proposing to construct and operate two buried crude oil pipelines to provide for unconstrained drawdown of three Strategic Petroleum Reserve (SPR) crude oil storage facilities of the Texoma Complex located in portions of Louisiana and Texas. The project is required to provide a crude oil distribution system capable of meeting a planned increase in the Texoma Complex drawdown rate to 2,340,000 barrels-per-day (bpd). The EA addresses a no-action alternative and alternative pipeline routes. Potential impacts from pipeline construction concern disturbances to prime farmlands, floodplains and wetlands. A very small acreage of prime farmlands is involved; the total is not considered significant. The Floodplain/Wetlands Assessment states that the effects of pipeline construction and operation on floodplains and associated wetlands will be temporary and localized. DOE determined in a Floodplain Statement of Findings that for the project as a whole there is no practicable alternative to locating in a floodplain, and that the proposal conforms to appropriate state and local floodplain protection standards. Potential impacts from pipeline operation are primarily concerned with accidental releases of crude oil to the environment. Because the pipelines will be buried, the probability of a major pipeline break releasing large quantities of crude oil is small and pipeline testing and the development of an oil spill contingency plan will reduce the seriousness of any oil spill. The proposed pipelines are expected to involve no other environmental concerns. It is the determination of DOE that the proposed Texoma Complex Distribution Enhancements do not constitute a major federal action significantly affecting the quality of the human environment; therefore an environmental impact statement will not be prepared. 27 refs., 3 tabs.

Not Available

1987-03-01T23:59:59.000Z

214

High-resolution stratigraphic and structural characterization of the fault-partitioned Hickory Sandstone aquifer system, Mason County, central Texas  

E-Print Network (OSTI)

The Hickory Sandstone is an important aquifer in central Texas and is partitioned by faults that impede cross-fault fluid flow. This study provides a detailed stratigraphic and structural model in the vicinity of a normal, oblique-slip fault with 60' (18.3 m) of stratigraphic throw. The model is developed using 3500' (1050 m) of continuous core and geophysical logs from eleven closely spaced boreholes. The local stratigraphy is studied in detail and environments of deposition inferred. A model of fault evolution is inferred using the observed fault structure and throw distributions. Locally, the Hickory Sandstone consists of 450' (137 m) of Cambrian-aged, quartzose and arkosic sandstone with localized mudstone and siltstone interbeds and overlies Precambrian Town Mountain Granite. Within the study area, the Hickory Sandstone is subdivided into four facies: the cross-bedded facies, the mudstone facies, the interbedded sandstone facies and the hematite facies. These facies form a stacked sequence representing an initial braided-stream fluvial environment that grades into a high energy, open marine environment that closely matches the tide-dominated, high microtidal estuarine model of Reinson (1992). Lateral correlation of strata packages in the cross-bedded facies was very difficult and complicated development of the fault model. The study fault is a linked fault system consisting of several major segments. Two segments overlap and locally hard link along both strike and dip. The major fault segments also consist of several linked subsegments. Net stratigraphic throw decreases slightly upward from a maximum of 60' (18.3 m) near the granite basement. Where the major segments overlap, the throw exhibits systematic variations consistent with displacement transfer between the neighboring segments. The linked fault system is inferred to have formed by interaction and linkage of two, early, en echelon basement faults. Ultimately these faults propagated upward and laterally into the overlying Hickory Sandstone, interacted and partially hard-linked, producing a large linkage structure that affected subsequent, neighboring hanging wall deformation. Subsidiary small faults are common but do not exhibit simple spatial relations with the large fault segments. There is only a weak correlation between a fault's shear zone thickness and stratigraphic throw for faults with 1' to 60' (0.3 to 18.3 m) of throw.

Wilson, Jason Steven

2001-01-01T23:59:59.000Z

215

Prediction of Unit Value of Un-Improved Parcels of Harris County, Texas Using LEED Sustainable Sites Criteria of Public Transportation Access  

E-Print Network (OSTI)

Leadership in Energy and Environmental Design (LEED) is one of the environmental assessment tools available to gauge buildings. This rating system is a voluntary system which does not include financial aspects in the evaluation framework. This poses a challenge for encouraging land development projects, since developers consider financial or economic return as a crucial factor before building a project. It becomes essential to know if market really accepts the economic worth of LEED ratings. This research attempted to find out relationship between economic worth of a land and parameters (measurements), which are essential to earn LEED sustainable rating for public transportation access. To find out this relationship and to recognize power of the LEED measurements to predict the appraised value of a land (dollars per square foot) various statistical models were used and predictive equations produced. The observational units were properties in Harris County, Texas that were unimproved and had zero improvement value. The dependent variable was unit value of the property measured in dollars per square foot. The independent variables were measurements that are required for a parcel to earn LEED sustainable site rating for public transportation access and the area of parcel. Data regarding appraised values and land area were acquired from the Harris County Appraisal District and transportation data was obtained from Houston- Galveston Area Council. Multiple regression analysis was used to analyze different models and to develop predictive equations. Findings suggest that LEED green building rating system influences the appraised value, dollars per square foot, of properties. It further implies that market considers the economic effect of the LEED rating system even if this assessment method does not explicitly include financial aspects in the evaluation framework. Findings of this research also suggest that a sustainable feature of a site is related to the economic worth of a related land development project. This will provide encouragement for new sustainable land development projects. This will provide an economic incentive to the owners and developers. Developers will get encouragement to select a site located closer to mass transit networks.

Joshi, Bhagyashri Bharat

2009-12-01T23:59:59.000Z

216

An integrated study of the Grayburg/San Andres Reservoir, Foster and South Cowden Fields, Ector County, Texas. Annual report, August 1, 1996--July 31, 1997  

SciTech Connect

The objective of this two-phase study is to demonstrate an integrated methodology for reservoir characterization of shallow shelf carbonate reservoir that is feasible, and cost effective for the independent operator. Furthermore, it will provide one of the first public demonstrations of the enhancement of reservoir characterization using high-resolution three dimensional (3D) seismic data. This particular project is evaluating the Grayburg and San Andres reservoirs in the Foster and South Cowden Fields, Ector County, Texas. This 68 year old field was approaching its economic limit and the leases evaluated would have been abandoned in 10 years. A multidisciplinary approach to waterflood design and implementation, along with the addition of reserves by selective infill drilling and deepening, is being applied to this field. This approach in reservoir development will be applicable to a wide range of shallow shelf carbonate reservoirs throughout the US. The first phase of the project included the design, acquisition, and interpretation of the 3D seismic survey, the collection and evaluation of geologic (core and log) data, and engineering (historical production, well test, injection) data from a variety of sources. From this work, a geologically based production history model was simulated. Based on the recommendations made at the end of Phase One, three new wells were drilled, one existing well was deepened, two wells were worked over, one TA`d well was re-entered, and one well was converted to injection. In addition, the quality of the injection water was greatly improved, a step necessary prior to increasing injection in the project area. The realignment of the waterflood and all additional well work await the completion of the seismic based history match and engineering simulation.

Trentham, R.C.; Weinbrandt, R.; Robinson, W.

1997-12-01T23:59:59.000Z

217

Validating the Estimated Cost of Saving Water Through Infrastructure Rehabilitation in the Texas Lower Rio Grande Valley (Hidalgo County Irrigation District No. 1)  

E-Print Network (OSTI)

A Case Study Using Actual Construction Costs for the Curry Main Pipeline Project, Hidalgo County Irrigation District No. 1 (Edinburg)

Lacewell, R. D.; Rister, M.; Sturdivant, A. W.

2005-09-01T23:59:59.000Z

218

The Honorable Bill Johnson j.  

Office of Legacy Management (LM)

- Department of En&gy, - Department of En&gy, Washington, DC 20585 \APR 0 3 7995 The Honorable Bill Johnson j. 30 Church Street, Rochester, New-York 14614 / Dear MayorJohnson: 'I Secretary of Energy Hazel O'Leary has announced a'nei approach to openness in the Department of'Energy (DDE) and its communications with the public. In, support of this initiative, we are pleased to forward the enclosed info&tion related to the former University of. Rochester site in, your jurisdiction performed work for DOE or its predecessor agencies. Thins information is provided for your information, use, and retqntion. DDE's Formerly Utilized SitesRemedial Action Program.isI responsible for identification of sites used by DOE's predecessor agencies, determining current 'radiological condition.'and, where, it has authority, performing

219

Johnson Controls | Open Energy Information  

Open Energy Info (EERE)

Controls Controls Jump to: navigation, search Logo: Johnson Controls Name Johnson Controls Address 5757 N. Green Bay Avenue Place Milwaukee, Wisconsin Zip 53201 Sector Efficiency Stock Symbol JCI Website http://www.johnsoncontrols.com Coordinates 43.1219149°, -87.9353576° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":43.1219149,"lon":-87.9353576,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

220

SC Johnson Waxdale Plant | Open Energy Information  

Open Energy Info (EERE)

SC Johnson Waxdale Plant SC Johnson Waxdale Plant Jump to: navigation, search Name SC Johnson Waxdale Plant Facility SC Johnson Waxdale Plant Sector Wind energy Facility Type Community Wind Facility Status In Service Owner SC Johnson Developer SC Johnson Energy Purchaser SC Johnson Location Sturtevant WI Coordinates 42.71313982°, -87.88755655° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":42.71313982,"lon":-87.88755655,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

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221

A methodology to evaluate energy savings and NOx emissions reductions from the adoption of the 2000 International Energy Conservation Code (IECC) to new residences in non-attainment and affected counties in Texas  

E-Print Network (OSTI)

Currently, four areas of Texas have been designated by the United States Environmental Protection Agency (EPA) as non-attainment areas because they exceeded the national one-hour ground-level ozone standard of 0.12 parts-per-million (ppm). Ozone is formed in the atmosphere by the reaction of Volatile Organic Compounds (VOCs) and Nitrogen Oxides (NOx) in the presence of heat and sunlight. In May 2002, The Texas State Legislature passed Senate Bill 5, the Texas Emissions Reduction Plan (TERP), to reduce the emissions of NOx by several sources. As part of the 2001 building energy performance standards program which is one of the programs in the TERP, the Texas Legislature established the 2000 International Energy Conservation Code (IECC) as the state energy code. Since September 1, 2001, the 2000 IECC has been required for newly constructed single and multifamily houses in Texas. Therefore, this study develops and applies portions of a methodology to calculate the energy savings and NOx emissions reductions from the adoption of the 2000 IECC to new single family houses in non-attainment and affected counties in Texas. To accomplish the objectives of the research, six major tasks were developed: 1) baseline data collection, 2) development of the 2000 IECC standard building simulation, 3) projection of the number of building permits in 2002, 4) comparison of energy simulations, 5) validation and, 6) NOx emissions reduction calculations. To begin, the 1999 standard residential building characteristics which are the baseline construction data were collected, and the 2000 IECC standard building characteristics were reviewed. Next, the annual and peak-day energy savings were calculated using the DOE-2 building energy simulation program. The building characteristics and the energy savings were then crosschecked using the data from previous studies, a site visit survey, and utility billing analysis. In this thesis, several case study houses are used to demonstrate the validation procedure. Finally, the calculated electricity savings (MWh/yr) were then converted into the NOx emissions reductions (tons/yr) using the EPA's eGRID database. The results of the peak-day electricity savings and NOx emissions reductions using this procedure are approximately twice the average day electricity savings and NOx emissions reductions.

Im, Piljae

2003-12-01T23:59:59.000Z

222

Validating the Estimated Cost of Saving Water Through Infrastructure Rehabilitation in the Texas Lower Rio Grande Valley (Hidalgo County Irrigation District No. 2)  

E-Print Network (OSTI)

A Case Study Using Actual Construction Costs for the Lateral A Lining Project, Hidalgo County Irrigation District No. 2 (San Juan)

Lacewell, R. D.; Rister, M.; Sturdivant, A. W.

2005-09-01T23:59:59.000Z

223

Harris County - LEED Requirement for County Buildings | Department of  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Harris County - LEED Requirement for County Buildings Harris County - LEED Requirement for County Buildings Harris County - LEED Requirement for County Buildings < Back Eligibility Local Government Savings Category Heating & Cooling Home Weatherization Construction Commercial Weatherization Commercial Heating & Cooling Design & Remodeling Program Info State Texas Program Type Energy Standards for Public Buildings Provider Harris County In 2009, the Harris County Commissioners Court approved a measure that requires all new county buildings to meet minimum LEED certification standards. Buildings do not have to register with the the U.S. Green Building Council. The Harris County Facilities and Property Management (FPM) Division also requires all county buildings to meet minimum energy efficiency and sustainability measures, as described in the

224

R. Shane Johnson, Associate Director  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Technology and International Cooperation Technology and International Cooperation Office of Nuclear Energy, Science and Technology April 15, 2002 University Programs University Programs Nuclear Energy Research Advisory Committee Office of Nuclear Energy, Science and Technology Johnson/April15_02 University to NERAC.ppt (2) Innovations in Nuclear Infrastructure and Education (INIE) Innovations in Nuclear Infrastructure and Education (INIE) 6 Program results from recommendation of NERAC Task Force 6 Conference in Chicago provided needed input on approach to "regional facilities" 6 INIE encourages universities to establish enhanced cooperation with other universities, national labs, U.S. industry and other private and public organizations 6 INIE seeks commitments from participating universities to

225

Info-Exch 2012- Thomas Johnson Presentation  

Energy.gov (U.S. Department of Energy (DOE))

EM Recovery Act Program Director Thomas Johnson gave a presentation on Recovery Act lessons learned at the 2012 Recovery Act Information Exchange.

226

NREL: Energy Sciences - Justin C. Johnson  

NLE Websites -- All DOE Office Websites (Extended Search)

At NREL Since: 2004 Justin Johnson received his B.A. in Chemistry and Physics from Macalester College in St. Paul, Minnesota, in 1999. His undergraduate...

227

Archaeological investigations in the Elm Creek Watershed, Runnels County, Texas: sites 41RN61, 41RN64, 41RN65, 41RN72, 41RN74, 41RN76  

E-Print Network (OSTI)

This thesis describes results of archaeological investigations and material analysis associated with six prehistoric sites in Runnels County, Texas that lie within a proposed Soil Conservation Service floodwater retarding structure and reservoir. Data recovery, based on geomorphic investigations to resolve potential for subsurface cultural deposits, resulted in retrieval of representative samples of lithic assemblages from four sites (41RN61, 41RN64, 41RN65, 41RN74). These lithic assemblages, along with lithic collections from previous testing by SMU within the project area (41RN72, 41RN76), were analyzed with an emphasis on the diversity in assemblage characteristics from quarry or primary lithic procurement sites as contrasted with sites in which further lithic reduction and utilization related to subsistence prevails, such as habitation sites. Inferences with regard to site activity and function are made based on results of lithic analysis and trends revealed in the data.

Sanders, Calvin B

1995-01-01T23:59:59.000Z

228

NREL: Energy Sciences - David K. Johnson  

NLE Websites -- All DOE Office Websites (Extended Search)

K. Johnson K. Johnson Senior Scientist Photo of David K. Johnson Phone: (303) 384-6263 Email: david.johnson@nrel.gov At NREL Since: 1982 David Johnson joined NREL in 1982. He has extensive knowledge and practical experience of electrochemistry, biomass composition and analysis, biomass pyrolysis oil fractionation and analysis, lignin chemistry, high-temperature and high-pressure lignin hydrotreating, supercritical fluid separations, and high-performance liquid and size exclusion chromatographies. He has guided research into conversion of lignin into high-octane gasoline blending components via based catalyzed depolymerization followed by catalytic hydrotreating. He has also led research into the effects of harvesting and storage on the composition of biomass feedstocks and the effect of these changes on the interaction

229

Environmental Assessment for Central Power and Light Company`s proposed Military Highway-CFE tie 138/69-kV transmission line project Brownsville, Cameron County, Texas  

SciTech Connect

Central Power and Light Company (CPL) intends to upgrade its existing transmission line ties with the Commision Federal de Electricidad (CFE) system in Mexico. CPL currently has a single 69-kilovolt (kV) transmission line in the Brownsville area which connects CPL`s system with the system of CFE. This existing line runs between the Brownsville Switching Station, located on Laredo Road in Brownsville, Cameron County, Texas, and an existing CFE 69-kV line at the Rusteberg Bend of the Rio Grande in Cameron County. Under current conditions of need, the existing 69-kV line does not possess sufficient capability to engage in appropriate power exchanges. Therefore, CPL is proposing to build a new line to link up with CFE. This proposed line would be a double-circuit line, which would (1) continue (on a slightly relocated route) the existing 69-kV tie from CPL`s Brownsville Switching Station to CFE`s facilities, and (2) add a 138-kV tie from the Military Highway Substation, located on Military Highway (US Highway 281), to CFE`s facilities. The proposed 138/69-kV line, which will be constructed and operated by CPL, will be built primarily on steel single-pole structures within an average 60-foot (ft) wide right-of-way (ROW). It will be approximately 6900--9200 ft (1.3--1.7 miles) in length, depending on the alternative route constructed.

1992-04-01T23:59:59.000Z

230

Johnson County, Iowa: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

1.5983959° 1.5983959° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":41.6698982,"lon":-91.5983959,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

231

Johnson County, Indiana: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

6.1344697° 6.1344697° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":39.4637793,"lon":-86.1344697,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

232

Johnson County, Illinois: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

8.90306° 8.90306° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":37.4203764,"lon":-88.90306,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

233

Johnson County, Kansas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

12°, -94.8520636° 12°, -94.8520636° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":38.845412,"lon":-94.8520636,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

234

Johnson County, Tennessee: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

°, -81.8224362° °, -81.8224362° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":36.4585672,"lon":-81.8224362,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

235

Johnson County, Kentucky: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

°, -82.8640623° °, -82.8640623° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":37.8048335,"lon":-82.8640623,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

236

Johnson County, Missouri: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

.8248241° .8248241° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":38.6744747,"lon":-93.8248241,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

237

Johnson County, Nebraska: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

3808026°, -96.3226072° 3808026°, -96.3226072° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":40.3808026,"lon":-96.3226072,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

238

Johnson County, Georgia: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

°, -82.6915429° °, -82.6915429° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":32.7308194,"lon":-82.6915429,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

239

Johnson County, Wyoming: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

2°, -106.4272801° 2°, -106.4272801° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":43.9557212,"lon":-106.4272801,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

240

Johnson County REMC - Commercial Energy Efficiency Rebate Program...  

Open Energy Info (EERE)

(Split SystemPackaged: 300 - 400 Packaged Terminal Heat Pump: 50 Programmable Thermostat: 30 Equipment Requirements Motors: NEMA guidelines; see program application HVAC...

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While these samples are representative of the content of NLEBeta,
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We encourage you to perform a real-time search of NLEBeta
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241

Johnson County, Arkansas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

5003454° 5003454° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":35.6026275,"lon":-93.5003454,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

242

Wood County Electric Coop, Inc | Open Energy Information  

Open Energy Info (EERE)

Wood County Electric Coop, Inc Place Texas Utility Id 20927 Utility Location Yes Ownership C NERC Location SPP NERC SPP Yes Activity Transmission Yes Activity Distribution Yes...

243

Tri-County Electric Cooperative - Energy Efficient Water Heater...  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Heating Program Information Texas Program Type Utility Rebate Program Rebate Amount 75 Tri-County Electric Cooperative offers a 75 rebate on the purchase of energy-efficient...

244

David W Johnson | Princeton Plasma Physics Lab  

NLE Websites -- All DOE Office Websites (Extended Search)

W Johnson W Johnson Principal Research Physicist, Head, ITER Fabrication David Johnson is a principal research physicist with broad experience in techniques and instrumentation for measuring the characteristics of magnetic fusion plasmas. He has specific expertise in laser Thomson scattering systems, and has installed and operated such systems on many fusion devices around the world. He managed a division of plasma diagnostic experts for the Tokamak Fusion Test Reactor (TFTR) and National Spherical Torus Experiment (NSTX) projects, more recently becoming the Work Breakdown Structure Team Leader for US ITER Diagnostics. He has served on numerous national and international committees related to diagnostic development. Interests Plasma diagnostics techniques and instrumentation

245

Categorical Exclusion Determinations: Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

July 11, 2011 July 11, 2011 CX-006184: Categorical Exclusion Determination Texas Propane Fleet Pilot Program CX(s) Applied: A1, A7, B5.1 Date: 07/11/2011 Location(s): Dickinson, Texas Office(s): Energy Efficiency and Renewable Energy, National Energy Technology Laboratory July 11, 2011 CX-006107: Categorical Exclusion Determination Texas-City-Flower Mound, Town of CX(s) Applied: A9, B2.5, B5.1 Date: 07/11/2011 Location(s): Flower Mound, Texas Office(s): Energy Efficiency and Renewable Energy June 30, 2011 CX-006233: Categorical Exclusion Determination El Paso County Geothermal Project at Fort Bliss CX(s) Applied: A9, B3.1 Date: 06/30/2011 Location(s): El Paso County, Texas Office(s): Energy Efficiency and Renewable Energy, Golden Field Office June 29, 2011 CX-006203: Categorical Exclusion Determination

246

Paulus, Sokolowski and Sartor (PS&S) & Johnson and Johnson Teaming Profile  

NLE Websites -- All DOE Office Websites (Extended Search)

Paulus, Sokolowski and Sartor (PS&S) & Johnson and Johnson Paulus, Sokolowski and Sartor (PS&S) & Johnson and Johnson Teaming Profile Secondary menu About us Press room Contact Us Portfolio Manager Login Facility owners and managers Existing buildings Commercial new construction Industrial energy management Small business Service providers Service and product providers Verify applications for ENERGY STAR certification Design commercial buildings Energy efficiency program administrators Commercial and industrial program sponsors Associations State and local governments Federal agencies Tools and resources Training In This Section Campaigns Commercial building design Communications resources Energy management guidance Financial resources Portfolio Manager Products and purchasing Recognition Research and reports Service and product provider (SPP) resources

247

Geoscience/engineering characterization of the interwell environment in carbonate reservoirs based on outcrop analogs, Permian Basin, West Texas and New Mexico - petrophysical characterization of the South Cowden Grayburg Reservoir, Ector County, Texas. Final report  

SciTech Connect

Reservoir performance of the South Cowden Grayburg field suggests that only 21 percent of the original oil in place has been recovered. The purpose of this study is to construct a realistic reservoir model to be used to predict the location of the remaining mobile oil. Construction of reservoir models for fluid-flow simulation of carbonate reservoirs is difficult because they typically have complicated and unpredictable permeability patterns. Much of the difficulty results from the degree to which diagenetic overprinting masks depositional textures and patterns. For example, the task of constructing a reservoir model of a limestone reservoir that has undergone only cementation and compaction is easier than constructing a model of a karsted reservoir that has undergone cavern formation and collapse as well as cementation and compaction. The Permian-age carbonate-ramp reservoirs in the Permian Basin, West Texas and New Mexico, are typically anhydritic dolomitized limestone. Because the dolomitization occurred soon after deposition, depositional fabrics and patterns are often retained, and a reservoir model can be constructed using depositional concepts. Recent studies of the San Andres outcrop in the Guadalupe Mountains and the Seminole San Andres reservoir in the Permian Basin illustrate how depositional fabrics and patterns can be used to construct a reservoir model when depositional features are retained.

Lucia, F.J.

1997-06-01T23:59:59.000Z

248

Testing geopressured geothermal reservoirs in existing wells. Saldana well No. 2, Zapata County, Texas. Volume I. Completion and testing. Final report  

DOE Green Energy (OSTI)

The Saldana Well No. 2, approximately 35 miles Southeast of the city of Laredo, Texas, was the sixth successful test of a geopressured-geothermal aquifer under the DOE Wells of Opportunity Program. The well was tested through the annulus between 7-inch casing and 2-3/8 inch tubing. The interval tested was from 9745 to 9820 feet. The geological section was the 1st Hinnant Sand, an upper member of the Wilcox Group. Produced water was injected into the Saldana Well No. 1, which was also acquired from Riddle Oil Company and converted to a disposal well. A Miocene salt water sand was perforated from 3005 to 3100 feet for disposal. One pressure drawdown flow test and one pressure buildup test were conducted during a 10-day period. A total of 9328 barrels of water was produced. The highest sustained flow rate was 1950 BWPD.

Not Available

1981-10-07T23:59:59.000Z

249

Final report for the geothermal well site restoration and plug and abandonment of wells: DOE Pleasant Bayou test site, Brazoria County, Texas  

DOE Green Energy (OSTI)

For a variety of reasons, thousands of oil and gas wells have been abandoned in the Gulf Coast Region of the United States. Many of these wells penetrated geopressured zones whose resource potential for power generation was undervalued or ignored. The U.S. Department of Energy (DOE) Geopressured-Geothermal Research Program was chartered to improve geothermal technology to the point where electricity could be commercially produced from a substantial number of geopressured resource sites. This research program focused on relatively narrow technical issues that are unique to geopressured resources such as the ability to predict reservoir production capacity based on preliminary flow tests. Three well sites were selected for the research program. These are the Willis Hulin and Gladys McCall sites in Louisiana, and the Pleasant Bayou site in Texas. The final phase of this research project consists of plug and abandonment (P&A) of the wells and site restoration.

Rinehart, Ben N.; Seigel, Ben H.

1994-03-13T23:59:59.000Z

250

Geoscience/engineering characterization of the interwell environment in carbonate reservoirs based on outcrop analogs, Permian Basin, West Texas and New Mexico--waterflood performance analysis for the South Cowden Grayburg Reservoir, Ector County, Texas. Final report  

SciTech Connect

A reservoir engineering study was conducted of waterflood performance in the South Cowden field, an Upper Permian Grayburg reservoir on the Central Basin Platform in West Texas. The study was undertaken to understand the historically poor waterflood performance, evaluate three techniques for incorporating petrophysical measurements and geological interpretation into heterogeneous reservoir models, and identify issues in heterogeneity modeling and fluid-flow scaleup that require further research. The approach included analysis of relative permeability data, analysis of injection and production data, heterogeneity modeling, and waterflood simulation. The poor South Cowden waterflood recovery is due, in part, to completion of wells in only the top half of the formation. Recompletion of wells through the entire formation is estimated to improve recovery in ten years by 6 percent of the original oil in place in some areas of the field. A direct three-dimensional stochastic approach to heterogeneity modeling produced the best fit to waterflood performance and injectivity, but a more conventional model based on smooth mapping of layer-averaged properties was almost as good. The results reaffirm the importance of large-scale heterogeneities in waterflood modeling but demonstrate only a slight advantage for stochastic modeling at this scale. All the flow simulations required a reduction to the measured whole-core k{sub v}/k{sub h} to explain waterflood behavior, suggesting the presence of barriers to vertical flow not explicitly accounted for in any of the heterogeneity models. They also required modifications to the measured steady-state relative permeabilities, suggesting the importance of small-scale heterogeneities and scaleup. Vertical flow barriers, small-scale heterogeneity modeling, and relative permeability scaleup require additional research for waterflood performance prediction in reservoirs like South Cowden.

Jennings, J.W. Jr.

1997-05-01T23:59:59.000Z

251

Walk Across Texas Logo Requirements The following requirements are meant to provide guidance as you design t-shirts,  

E-Print Network (OSTI)

Walk Across Texas Logo Requirements The following requirements are meant to provide guidance as you design t-shirts, posters, etc. for the Walk Across Texas program in your county. · The Walk Across Texas image and/or to use that image larger than the Walk Across Texas logo, that is fine. However, the image

Wilkins, Neal

252

The use of agave, sotol, and yucca at Hinds Cave, Val Verde County, Texas: reconstructing methods of processing through the formation of behavioral chains  

E-Print Network (OSTI)

Little research has focused on the analysis of plant macro-remains found in archaeological contexts in southwest Texas. This is a remarkable oversight considering the wealth of well-preserved plant remains found in rockshelters along the Rio Grande, Pecos and Devils Rivers. This study seeks to analyze the plant macro-remains from Hinds Cave, specifically lechuguilla (Agave lechuguilla), sotol (Dasylirion texanum) and yucca (Yucca spp.), in an effort to gain insight into the diet, methods of processing and material culture of mobile hunter-gatherers living in the Lower Pecos between 9,000 BP and 1,000 BP. Elucidation of the use of these desert evergreen genera will be aided with the use of a behavioral chain in which activities are organized into sequences of processing and the outputs recognized. By reference to ethnographic literature, demonstration of experimental activities and study of the archaeological remains three behavioral chains were constructed for each plant considered. By coordinating the outputs of the behavioral chain with the archaeological assemblage it was concluded that each species was physically processed in similar ways; however, each plant was unique in regard to its specific use in subsistence and/or incorporation in material culture. This uniqueness was evident by comparison of the actual archaeological assemblage and the proposed outputs of the behavioral chains themselves. Lechuguilla was processed for food and fiber (specifically in cordage and sandal manufacture), sotol leaves would have been used mainly in basketry and to a lesser extent as food. Yucca was processed for its fiber. Behavioral chains for lechuguilla, sotol and yucca were helpful in identifying those means by which the plants were processed and their uses as food, production of material culture or both.

Woltz, Ben vanDalsem

1998-01-01T23:59:59.000Z

253

Abandoned Texas oil fields  

SciTech Connect

Data for Texas abandoned oil fields were primarily derived from two sources: (1) Texas Railroad Commission (TRRC), and (2) Dwight's ENERGYDATA. For purposes of this report, abandoned oil fields are defined as those fields that had no production during 1977. The TRRC OILMASTER computer tapes were used to identify these abandoned oil fields. The tapes also provided data on formation depth, gravity of oil production, location (both district and county), discovery date, and the cumulative production of the field since its discovery. In all, the computer tapes identified 9211 abandoned fields, most of which had less than 250,000 barrel cumulative production. This report focuses on the 676 abandoned onshore Texas oil fields that had cumulative production of over 250,000 barrels. The Dwight's ENERGYDATA computer tapes provided production histories for approximately two-thirds of the larger fields abandoned in 1966 and thereafter. Fields which ceased production prior to 1966 will show no production history nor abandonment date in this report. The Department of Energy hopes the general availability of these data will catalyze the private sector recovery of this unproduced resource.

1980-12-01T23:59:59.000Z

254

Clean Cities: Lone Star Clean Fuels Alliance (Central Texas) coalition  

Alternative Fuels and Advanced Vehicles Data Center (EERE)

Lone Star Clean Fuels Alliance (Central Texas) Coalition Lone Star Clean Fuels Alliance (Central Texas) Coalition The Lone Star Clean Fuels Alliance (Central Texas) coalition works with vehicle fleets, fuel providers, community leaders, and other stakeholders to reduce petroleum use in transportation. Lone Star Clean Fuels Alliance (Central Texas) coalition Contact Information Stacy Neef 512-773-8794 stacy.neef@lonestarcfa.org Coalition Website Clean Cities Coordinator Stacy Neef Photo of Stacy Neef Stacy Neef has served as the coordinator for Lone Star Clean Fuels Alliance (Austin) (LSCFA) promoting and advancing the use of alternative fuel and vehicles for fleets in central Texas since 2000. The central Texas region includes Bastrop, Caldwell, Hays, Travis, Williamson Counties; Fort Hood and City of Temple, Texas. LSCFA works closely with other Texas Clean

255

Texas Tech University  

E-Print Network (OSTI)

Texas Tech University :: TechAnnounce http Academic Departmental Citing scheduling conflicts with the Texas Oklahoma-Texas Tech football game and international environmental reporters, experts and industry and government leaders to the Hub City. Texas Tech

Rock, Chris

256

Lithologic characteristics, depositional environments and geometries of reservoir and nonreservoir facies in the Queen Formation (Guadalupian, Permian) of Moose and Virey Fields, Midland County, Texas  

E-Print Network (OSTI)

The Queen Formation is a member of the Artesia Group, which is a sequence of intermingling carbonates, classics and evaporates that were deposited during Guadalupian (Permian) time across the Northwest Shelf, Central Basin Platform, and Midland Basin of the Permian Basin, west Texas and southeastern New Mexico. In Moose and Virey Fields, the Queen is the main producing formation and consists entirely of intercepted back-reef shelf elastics and evaporates which were deposited in a variety of continental desert and marginal marine settings. The Queen desert was a broad and generally low-relief surface transected by warm temperatures, semi-arid climate, scarce vegetation, and alternating periods of dryness and intense storm-induced flashflooding. Sedimentation within the Queen desert took place in six separate depositional environments. The elastics of Moose and Virey Fields were deposited in proximal fluvial sandflat and fluvial-dominated sabra environments, and along the edge of a shallow hypersaline lagoon. The anhydrides (formerly gypsum) were precipitated subaqueously on the floor of and in the subsurface beneath a broad and shallow, hypersaline lagoon which was characterized by poor circulation and restriction from the normal marine environment. Some halides formed subaqueously in a large, but very shallow, isolated inland saliva situated in the topographic lows of the desert sabkha. Other halides formed in an ephemeral and sometimes desiccated salt-pan environment which was subjected to alternating 'wet' and 'dry' conditions. It is believed that the progression of depositional environments across the study area was in part controlled by fourth- and fifth-order relative sea level fluctuations during a major third-order marine regression. Two large subsurface structural collapse features with at least 200 feet of vertical relief are located in the central portions of Moose and Virey Fields. The collapse of the Queen Formation in these areas was induced by the post-depositional and post-burial dissolution of the halides primarily of the underlying Grayburg Formation, and to a lesser extent of the Queen Formation. It apparently occurred as a series of minor collapse events which first began in Post-oueen Guadalupian time, during deposition of the lower Seven Rivers Formation, and finally ended in the Ochoan during deposition of the Rustler Anhydrite.

Aller, Gregory Shane

1999-01-01T23:59:59.000Z

257

Texas Census Snapshot: 2010  

E-Print Network (OSTI)

Abilene Missouri Conroe Texas Odessa San Angelo LongviewTexas Census Snapshot: 2010 Same-sex couples Same-sex

Gates, Gary J.; Cooke, Abigail M.

2011-01-01T23:59:59.000Z

258

Wildland Fires Texas 2011  

Science Conference Proceedings (OSTI)

Wildland-Urban Interface Fires, Amarillo, Texas 2011. ... The deployment was conducted jointly with the Texas Forest Service (TFS). ...

2012-12-11T23:59:59.000Z

259

Texas Transportation Institute Texas A&M University System  

E-Print Network (OSTI)

Texas Transportation Institute Texas A&M University System Dock Burke Regents Fellow Director, Southwest Region University Transportation Center Senior Research Scientist, Texas Transportation Institute Texas Transportation Institute Texas A&M University System College Station, Texas 77843 d

260

TEXAS SALES AND USE TAX EXEMPTION CERTIFICATION Name of purchaser, firm or agency  

E-Print Network (OSTI)

TEXAS SALES AND USE TAX EXEMPTION CERTIFICATION Name of purchaser, firm or agency Address (Street Tax Act; County Health Services Sales and Use Tax; The Texas Health and Safety Code; Special certificate to the Comptroller of Public Accounts. 01-339 (Back) (Rev. 11-95/3) Texas AgriLife Research

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261

The University of Texas at Arlington 2011-2012 Scholarship Application Franklin L. Hodge Memorial Scholarship  

E-Print Network (OSTI)

The University of Texas at Arlington 2011-2012 Scholarship Application Franklin L. Hodge Memorial. Applicant must be a graduate of a Navarro County, Texas high school. 2. Applicant must have a minimum high The University of Texas at Arlington (UT Arlington) collects concerning you. You may review and have UT Arlington

Corley, Bill

262

The University of Texas at Arlington 2012-2013 Scholarship Application Franklin L. Hodge Memorial Scholarship  

E-Print Network (OSTI)

The University of Texas at Arlington 2012-2013 Scholarship Application Franklin L. Hodge Memorial of a Navarro County, Texas high school. 2. Applicant must have a minimum high school or college grade point The University of Texas at Arlington (UT Arlington) collects concerning you. You may review and have UT

Huang, Haiying

263

Johnson, Wisconsin: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

Johnson, Wisconsin: Energy Resources Johnson, Wisconsin: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 45.0113575°, -89.3559497° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":45.0113575,"lon":-89.3559497,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

264

TO :Lyall E. Johnson, Chief Licensing Branch  

Office of Legacy Management (LM)

Lyall E. Johnson, Chief Lyall E. Johnson, Chief Licensing Branch ,,,_ i-.. FROM :Clifford K. Beck, Chief q q+. ., ,,/,j !i-/ I, v' Hazards Evaluation Branch ,: s~~p:~LLItma0~7c ~HEI-IICAL wows We have reviewed the letter of December 10, 1958, from Mallinckrodt Chemical Works, requesting amendment of License No. SNM-33 to permit pelleting operations on uranium enriched to 5% U-235 in a new facility at Hematite, Missouri. Batch sizes throughout the operations will not exceed limited safe masses as specified in Report K-1019, Part 4 (Deleted). Neither the diameter nor capacity of the storage hopper located above the feed hopper of the pelleting press is given. Either the diameter should be not over the limited safe dimension or positive means should be in effect to insure against more than a limited safe m&s in the

265

Texas Tech University System  

E-Print Network (OSTI)

Texas Tech University System :: Huffaker Named as Texas Tech System General Counsel http://www.texastech.edu/stories/12-03-TTUS-Washington-DC-Trip.php[4/2/2012 8:13:27 AM] Chancellor Hance and leadership from the Texas visited with Texas Tech students and Congressional interns while in Washington, D.C. March 27, 2012 Texas

Rock, Chris

266

Categorical Exclusion Determinations: Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

April 26, 2011 April 26, 2011 CX-005888: Categorical Exclusion Determination High Pressure Fire Loop Tank and Pump Replacement CX(s) Applied: B1.15 Date: 04/26/2011 Location(s): Pantex Plant, Texas Office(s): NNSA-Headquarters, Pantex Site Office April 21, 2011 CX-005731: Categorical Exclusion Determination Seadrift Wind Turbine CX(s) Applied: B5.1 Date: 04/21/2011 Location(s): Calhoun County, Texas Office(s): Energy Efficiency and Renewable Energy, Golden Field Office April 21, 2011 CX-005730: Categorical Exclusion Determination State Energy Program Sinton Independent School District Wind Energy Project- Phase II CX(s) Applied: B5.1 Date: 04/21/2011 Location(s): San Patricio County, Texas Office(s): Energy Efficiency and Renewable Energy, Golden Field Office April 13, 2011 CX-005622: Categorical Exclusion Determination

267

counties - Counties Data | Data.gov  

NLE Websites -- All DOE Office Websites (Extended Search)

- Counties Data Counties Data Apps Challenges Policies Counties You are here Data.gov Communities Counties Counties Data This page features datasets from participating...

268

Census Snapshot: Texas  

E-Print Network (OSTI)

THE WILLIAMS INSTITUTE CENSUS SNAPSHOT TEXAS JANUARY 2008TEXAS Adam P. Romero, Public Policy Fellow Clifford J.sex couples raising children in Texas. We compare same-sex

Romero, Adam P; Rosky, Clifford J; Badgett, M.V. Lee; Gates, Gary J

2008-01-01T23:59:59.000Z

269

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Texas Capital Fund (Texas) The Texas Capital Fund is designed to promote growth in rural non-entitlement areas, generally defined as cities with less than 50,000 residents or...

270

Texas Web Sites - Energy Information Administration  

U.S. Energy Information Administration (EIA)

Texas Web Sites Other Links : Texas Electricity Profile: Texas Energy Profile: Texas Restructuring: Last Updated: April 2007 . Sites: Links ...

271

Categorical Exclusion Determinations: Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

May 25, 2010 May 25, 2010 CX-002417: Categorical Exclusion Determination Technical Demonstration and Economic Validation of Geothermally-Produced Electricity from Coproduced Water at Existing Oil/Gas Wells in Texas CX(s) Applied: A9, B5.1, B5.2, B5.12 Date: 05/25/2010 Location(s): Liberty County, Texas Office(s): Energy Efficiency and Renewable Energy, Golden Field Office May 25, 2010 CX-002555: Categorical Exclusion Determination American Recovery and Reinvestment Act State Energy Program City of Weslaco Solar Project CX(s) Applied: B5.1 Date: 05/25/2010 Location(s): Weslaco, Texas Office(s): Energy Efficiency and Renewable Energy, Golden Field Office May 24, 2010 CX-002394: Categorical Exclusion Determination Texas Propane Fleet Pilot Program CX(s) Applied: A7, B5.1 Date: 05/24/2010

272

Retail Unbundling - Texas  

U.S. Energy Information Administration (EIA) Indexed Site

Home > Natural Gas > Natural Gas Residential Choice Programs > Texas Retail Unbundling - Texas Status: The State has no active residential customer choice programs, but some...

273

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Texas July 23, 2010 CX-003171: Categorical Exclusion Determination Colonias for Microgrids (Texas) Electricity Delivery and Energy Reliability (OE) 14.09 CX(s) Applied: A1,...

274

,"Texas Natural Gas Summary"  

U.S. Energy Information Administration (EIA) Indexed Site

Natural Gas Wellhead Price (Dollars per Thousand Cubic Feet)","Texas Natural Gas Imports Price (Dollars per Thousand Cubic Feet)","Price of Texas Natural Gas Exports...

275

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Canadian River Compact (Texas) The Canadian River Commission administers the Canadian River Compact which includes the states of New Mexico, Oklahoma, and Texas. Signed in 1950 by...

276

Tornado Jarrell Texas 1997  

Science Conference Proceedings (OSTI)

Tornado, Jarrell, Texas, May 27, 1997. ... The most destructive of these tornadoes swept through a housing area on the outskirts of Jarrell, Texas. ...

2011-08-12T23:59:59.000Z

277

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Ownership of Carbon Dioxide Captured by Clean Coal Project (Texas) This legislation stipulates that the Railroad Commission of Texas automatically acquires the title to any carbon...

278

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

on this program. July 12, 2013 Austin Energy - Value of Solar Residential Rate (Texas) Austin Energy, the municipal utility of Austin Texas, offers the Value of Solar rate...

279

Pleasant Bayou Operations Brazoria County, Texas  

DOE Green Energy (OSTI)

This project will demonstrate the Hybrid Cycle Concept for electricity generation using geopressured-geothermal resources. The test is scheduled to be a minimum of one year, which may be extended. The majority of the equipment came from the DOE facility at East Mesa, CA. The hybrid cycle has been designed for 10,800 BPD brine and 220,000 SCFD of gas. The power output will be about one megawatt, which will be sold to Houston Lighting and Power Company. An important research objective is to determine the size and ultimate production capability of the geopressured-geothermal reservoir. The long-term deliverability of these type reservoirs is a significant factor in determining the ultimate economic capability of these systems.

Eaton, B.A.; Featherston, C.R.; Meahl, T.E.

1989-03-21T23:59:59.000Z

280

Solar production of industrial process steam. Phase III. Operation and evaluation of the Johnson and Johnson solar facility. Final report, January 1, 1980-March 31, 1981  

DOE Green Energy (OSTI)

A solar facility that generates 177/sup 0/C (350/sup 0/F) process steam has been designed and constructed by Acurex Corporation and has operated for 1 yr supplying steam to the Johnson and Johnson manufacturing plant in Sherman, Texas. The facility consists of 1068 m/sup 2/ (11,520 ft/sup 2/) of parabolic trough concentrating collectors, a 18,900 1 (5000 gal) flash boiler, and an 18.6 kW (25 hp) circulating pump. In the first year of operation the system was available 97 percent of the days, and with sufficient solar radiation available it operated 70 percent of the days during this period. The measured data showed that the collector field operated at an efficiency of 25.4 percent for the year, and that at least 75 percent of the energy reaching the flash boiler was delivered to the plant as steam. A total of 309,510 kg (682,400 lb) of steam was produced by the solar facility for the first year. An analysis of the data showed that the delivered energy was within 90 to 100 percent of the predicted value. The successful completion of the first year of operation has demonstrated the technical feasibility of generating industrial process steam with solar energy.

Brink, D.F.; Kendall, J.M.; Youngblood, S.B.

1981-03-01T23:59:59.000Z

Note: This page contains sample records for the topic "johnson county texas" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


281

Johnson Controls & Ford Motor Company Teaming Profile | ENERGY...  

NLE Websites -- All DOE Office Websites (Extended Search)

Johnson Controls & Ford Motor Company Teaming Profile Secondary menu About us Press room Contact Us Portfolio Manager Login Facility owners and managers Existing buildings...

282

Caroline E. Johnson*, Charles A. Nash**, Mark R. Duignan**  

Crossflow Filter Investigations to Improve SRS and Hanford Waste Treatment Plant Operations Caroline E. Johnson*, Charles A. Nash**, Mark R. Duignan**

283

Attitudes of Texas agrilife extension 4-H agents on incorporating science, technology, engineering, and math (STEM) in 4-H youth development.  

E-Print Network (OSTI)

??The purpose of this study was to determine the attitudes of Texas Agrilife Extension county 4-H agents on incorporating science, technology, engineering, and math (STEM) (more)

[No author

284

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

January 29, 1993 EA-0688: Final Environmental Assessment Hazardous Waste Staging Facility, Pantex Plant, Amarillo, Texas...

285

Kitsap County  

E-Print Network (OSTI)

Kitsap County Goals and Policies on Critical Areas........... 6 The BAS Process............................ 7

unknown authors

2004-01-01T23:59:59.000Z

286

Texas State Regulations  

NLE Websites -- All DOE Office Websites (Extended Search)

Texas Texas State Regulations: Texas State of Texas The Railroad Commission of Texas (RCC), through the Oil and Gas Division, administers oil and gas exploration, development, and production operations, except for oil and gas leasing, royalty payments, surface damages through oil and gas operations, and operator-landowner contracts. The RCC and the Texas Commission on Environmental Quality (TCEQ), formerly, the Texas Natural Resource Conservation Commission (TNRCC), have entered into a Memorandum of Understanding clarifying jurisdiction over oil field wastes generated in connection with oil and gas exploration, development, and production. The RCC Oil and Gas Division operates nine district offices, each staffed with field enforcement and support personnel.

287

Microsoft PowerPoint - Johnson_EECBG  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

American Recovery & Reinvestment Act American Recovery & Reinvestment Act eere.energy.gov WIP Small Business Opportunity Claire Johnson Acting Program Manager, Weatherization and Intergovernmental Programs U.S. Department of Energy, Office of EERE December 17, 2009 2 | American Recovery & Reinvestment Act eere.energy.gov Agenda * Overview of WIP * Where are DOE ARRA WIP dollars going? * Resources 3 | American Recovery & Reinvestment Act eere.energy.gov Weatherization & Intergovernmental Programs Implementing $12bn ARRA Funds WIP Vision: Stimulate US economy and catalyze energy efficiency and renewable energy markets WIP Mission: Increase Jobs, Reduce kWhs (Increase Renewable kWhs) Vision & Mission is achieved through a variety of programs: * Weatherization Assistance Program (WAP)

288

DOE Congratulates Under Secretary Johnson for Technology Leadership Award |  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

DOE Congratulates Under Secretary Johnson for Technology Leadership DOE Congratulates Under Secretary Johnson for Technology Leadership Award DOE Congratulates Under Secretary Johnson for Technology Leadership Award May 12, 2010 - 12:00am Addthis Washington, DC - U.S. Department of Energy Under Secretary Kristina M. Johnson has been selected to receive the 2010 Women of Vision Leadership Award from the Anita Borg Institute for Women and Technology (ABI). ABI honors women making significant contributions to technology in the categories of leadership, innovation and social impact. The Women of Vision Awards ceremony will take place Wednesday, May 12th at the Mission City Ballroom in Santa Clara, CA. "Under Secretary Johnson has proven to be a leader in technology and engineering throughout her illustrious career," said Secretary Chu. "The

289

Obama Administration Announces Johnson Controls, Macy's and Sprint Join  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Johnson Controls, Macy's and Johnson Controls, Macy's and Sprint Join the Better Buildings Challenge Obama Administration Announces Johnson Controls, Macy's and Sprint Join the Better Buildings Challenge February 21, 2013 - 11:50am Addthis News Media Contact (202) 586-4940 WASHINGTON - As part of the Obama Administration's commitment to creating clean energy jobs and lowering energy bills for U.S. businesses, the Department announced that Johnson Controls, Macy's and Sprint are joining the Better Buildings Challenge. Launched by President Obama in 2011, the Better Buildings Challenge brings together corporations, universities, municipalities and other national leaders to make significant commitments to energy efficiency, reduce waste and save on energy costs. Johnson Controls, Macy's and Sprint will upgrade more than 200 million

290

Energy Efficiency/Renewable Energy Impact in the Texas Emissions Reduction Plan (TERP): Vol. II  

E-Print Network (OSTI)

The Energy Systems Laboratory (Laboratory), at the Texas Engineering Experiment Station of the Texas A&M University System, in fulfillment of its responsibilities under Texas Health and Safety Code Ann. 388.003 (e), Vernon Supp. 2002, submits its fifth annual report, Energy Efficiency/Renewable Energy (EE/RE) Impact in the Texas Emissions Reduction Plan to the Texas Commission on Environmental Quality. The report is organized in three volumes. Volume I Summary Report provides an executive summary and overview; Volume II Technical Report provides a detailed report of activities, methodologies and findings; Volume III Technical Appendix contains detailed data from simulations for each of the counties included in the analysis.

Haberl, Jeff; Culp, Charles; Yazdani, Bahman; Gilman, Don; Fitzpatrick, Tom; Muns, Shirley; Verdict, Malcolm; Ahmed, M.; Liu, Zi; Baltazar, Juan Carlos; Montgomery, Cynthia; McKelvey, Katherine; Mukhopadhyay, Jaya; Degelman, Larry

2008-12-01T23:59:59.000Z

291

Energy Efficiency/Renewable Energy Impact in the Texas Emissions Reduction Plan (TERP): Volume I  

E-Print Network (OSTI)

The Energy Systems Laboratory (Laboratory), at the Texas Engineering Experiment Station of the Texas A&M University System, in fulfillment of its responsibilities under Texas Health and Safety Code Ann. 388.003 (e), Vernon Supp. 2002, submits its fifth annual report, Energy Efficiency/Renewable Energy (EE/RE) Impact in the Texas Emissions Reduction Plan to the Texas Commission on Environmental Quality. The report is organized in three volumes. Volume I Summary Report provides an executive summary and overview; Volume II Technical Report provides a detailed report of activities, methodologies and findings; Volume III Technical Appendix contains detailed data from simulations for each of the counties included in the analysis.

Haberl, Jeff; Culp, Charles; Yazdani, Bahman; Gilman, Don; Fitzpatrick, Tom; Muns, Shirley; Liu, Zi; Baltazar, Juan Carlos; Mukhopadhyay, Jaya; Degelman, Larry; Claridge, David

2008-12-01T23:59:59.000Z

292

Texas Distant Learning Association Annual Conference San Antonio, Texas  

E-Print Network (OSTI)

and other departments), Texas Southern University, Texas A&M, Mexico Department of Health, UNAM, PEMEX, QGSI

Azevedo, Ricardo

293

EA-1090: Disbursement of $65 Million to the State of Texas for Construction  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

0: Disbursement of $65 Million to the State of Texas for 0: Disbursement of $65 Million to the State of Texas for Construction of a Regional Medical Technology Center, Waxahachie, Texas EA-1090: Disbursement of $65 Million to the State of Texas for Construction of a Regional Medical Technology Center, Waxahachie, Texas SUMMARY This EA evaluates the environmental impacts of a proposal to transfer $65 million of federal funds to the Texas National Research Laboratory Commission for construction of the Regional Medical Technology Center to be located in Ellis County, Texas. PUBLIC COMMENT OPPORTUNITIES None available at this time. DOCUMENTS AVAILABLE FOR DOWNLOAD May 16, 1995 EA-1090: Finding of No Significant Impact Disbursement of $65 Million to the State of Texas for Construction of a Regional Medical Technology Center

294

Texas Transportation Institute Texas A&M University System  

E-Print Network (OSTI)

Texas Transportation Institute Texas A&M University System Timothy J. Lomax, Ph.D., P.E. Research Engineer SWUTC Associate Director for Transportation Research at Texas A&M University Texas Transportation Institute Texas A&M University System College Station, Texas 77843 t-lomax@tamu.edu (979) 845-9960 Biography

295

Texas Transportation Institute Texas A&M University System  

E-Print Network (OSTI)

Texas Transportation Institute Texas A&M University System H. Gene Hawkins Jr., Ph.D., P Scholars, TAMU Texas Transportation Institute Texas A&M University System College Station, Texas 77843 of Zachry Civil Engineering at Texas A&M University, where he has served for the past seven years

296

Texas Nuclear Profile - South Texas Project  

U.S. Energy Information Administration (EIA) Indexed Site

South Texas Project" "Unit","Summer capacity (mw)","Net generation (thousand mwh)","Summer capacity factor (percent)","Type","Commercial operation date","License expiration date"...

297

Categorical Exclusion Determinations: Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

July 13, 2010 July 13, 2010 CX-003029: Categorical Exclusion Determination Recovery Act - Fault Current Limiting Superconducting Transformer CX(s) Applied: A11, B3.6 Date: 07/13/2010 Location(s): Houston, Texas Office(s): Electricity Delivery and Energy Reliability, National Energy Technology Laboratory July 12, 2010 CX-002981: Categorical Exclusion Determination Activity #7 - Solar Array at Airport American Recovery and Reinvestment Act - Energy Efficiency and Conservation Block Grant CX(s) Applied: A9, A11, B5.1 Date: 07/12/2010 Location(s): San Antonio, Texas Office(s): Energy Efficiency and Renewable Energy, Golden Field Office July 12, 2010 CX-002982: Categorical Exclusion Determination County of Hidalgo Texas - Solar Lights for Colonias American Recovery and Reinvestment Act - Energy Efficiency and Conservation Block Grant (S)

298

Tornado Lubbock Texas May 1970  

Science Conference Proceedings (OSTI)

Tornado, Lubbock, Texas, May, 1970. On May 11, 1970, in the late evening, Lubbock Texas experienced a tornado that ...

2011-08-12T23:59:59.000Z

299

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

10, 2009 CX-000351: Categorical Exclusion Determination Texas Propane Fleet Pilot Program CX(s) Applied: A1, A9 Date: 12102009 Location(s): Austin, Texas Office(s): Energy...

300

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

May 27, 2010 CX-002520: Categorical Exclusion Determination Texas Propane Fleet Pilot Program CX(s) Applied: A7, B5.1 Date: 05272010 Location(s): Grapevine, Texas Office(s):...

Note: This page contains sample records for the topic "johnson county texas" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


301

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

9, 2010 CX-002947: Categorical Exclusion Determination Texas Propane Fleet Pilot Program CX(s) Applied: A7, B5.1 Date: 07092010 Location(s): Angleton, Texas Office(s): Energy...

302

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Recycling Hybrid Geothermal Heat Pump Systems in Hot, Arid or Semiarid Climates Like Texas CX(s) Applied: A9 Date: 03092010 Location(s): Austin, Texas Office(s): Energy...

303

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

30, 2010 CX-007042: Categorical Exclusion Determination Kickapoo Traditional Tribe of Texas CX(s) Applied: A9, B5.1 Date: 03302010 Location(s): Kickapoo Tribe, Texas Office(s):...

304

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

January 10, 2011 CX-005000: Categorical Exclusion Determination Texas-City-Pearland CX(s) Applied: B5.1 Date: 01102011 Location(s): Pearland, Texas Office(s): Energy Efficiency...

305

UNIVERSITIES IN TEXAS, PRIVATE  

E-Print Network (OSTI)

Caption FOR PUBLIC UNIVERSITIES IN TEXAS, PRIVATE SUPPORT IS THE ENGINE OF QUALITY. Indeed, state support (general revenues) today provides just one-third of Texas A&M University's total budget per student as Texas A&M. COLLEGE OF SCIENCE http://www.science.tamu.edu 3257 TAMU College Station

306

Jamail Texas Recreational  

E-Print Network (OSTI)

Lot 40 Lot 31 Lot 16 Lot 11 Lot 70 Lot 99 Lot 80 Lot 118 Lot 108 Trinity Garage Jamail Texas Swimming Blanton Museum of Art Brazos Garage Conference Center Garage Main Building San Jacinto Garage DKR Texas Memorial Stadium Bellmont Hall North End Zone North End Zone Bellmont Hall DKR Texas Memorial Stadium San

Texas at Austin, University of

307

Secretary Chu Announces Best Buy, Johnson Controls, Pacific Gas and  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Secretary Chu Announces Best Buy, Johnson Controls, Pacific Gas and Secretary Chu Announces Best Buy, Johnson Controls, Pacific Gas and Electric, and Veolia to Join National Clean Fleets Partnership Secretary Chu Announces Best Buy, Johnson Controls, Pacific Gas and Electric, and Veolia to Join National Clean Fleets Partnership March 5, 2012 - 12:15pm Addthis INDIANAPOLIS, IN -- Energy Secretary Steven Chu today announced that four new corporate partners - Best Buy, Johnson Controls, Pacific Gas and Electric, and Veolia - are joining the Energy Department's National Clean Fleets Partnership, a broad public-private partnership that assists the nation's largest fleet operators in reducing the amount of gasoline and diesel they use nationwide. The new partners announced today join with 14 other major national companies in committing to improve the fuel economy

308

USEA/Johnson Controls Energy Efficiency Forum | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

USEA/Johnson Controls Energy Efficiency Forum USEA/Johnson Controls Energy Efficiency Forum USEA/Johnson Controls Energy Efficiency Forum June 11, 2008 - 1:30pm Addthis Remarks as Prepared for Secretary Bodman Thank you, Barry, for that kind introduction. I want to thank Johnson Controls and USEA for sponsoring this event and for continuing to draw attention to the critical importance of improving energy efficiency throughout our nation and around the world. I also want to take a moment to thank you for earlier today recognizing our Assistant Secretary of Energy Efficiency and Renewable Energy Andy Karsner. He has done a tremendous job in changing the way we bring government-sponsored research and development into the marketplace, and I am confident his efforts to accelerate the commercialization of advanced

309

Microsoft Word - Johnson and Koonin Biographies.doc  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Biographies Biographies Kristina Johnson, Under Secretary for Energy Kristina M. Johnson was previously the provost and senior vice president for academic affairs of Johns Hopkins University. Prior to that, Johnson served as the Dean of Duke University's Pratt School of Engineering from 1999-2007 where she helped to set up interdisciplinary efforts in photonics, bioengineering and biologically inspired materials, and energy and the environment. Before that she was on the faculty of the University of Colorado, Boulder from 1985-1999 where she led an NSF Engineering Research Center and involved engineers, mathematicians, physicists, chemists and psychologists in working to make computers faster and better connected. Johnson is an electrical engineer with more than 129 US and foreign patents or patents pending.

310

Secretary Chu Announces Best Buy, Johnson Controls, Pacific Gas and  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Best Buy, Johnson Controls, Pacific Gas and Best Buy, Johnson Controls, Pacific Gas and Electric, and Veolia to Join National Clean Fleets Partnership Secretary Chu Announces Best Buy, Johnson Controls, Pacific Gas and Electric, and Veolia to Join National Clean Fleets Partnership March 5, 2012 - 12:15pm Addthis INDIANAPOLIS, IN -- Energy Secretary Steven Chu today announced that four new corporate partners - Best Buy, Johnson Controls, Pacific Gas and Electric, and Veolia - are joining the Energy Department's National Clean Fleets Partnership, a broad public-private partnership that assists the nation's largest fleet operators in reducing the amount of gasoline and diesel they use nationwide. The new partners announced today join with 14 other major national companies in committing to improve the fuel economy

311

USEA/Johnson Controls Energy Efficiency Forum | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

USEA/Johnson Controls Energy Efficiency Forum USEA/Johnson Controls Energy Efficiency Forum USEA/Johnson Controls Energy Efficiency Forum June 11, 2008 - 1:30pm Addthis Remarks as Prepared for Secretary Bodman Thank you, Barry, for that kind introduction. I want to thank Johnson Controls and USEA for sponsoring this event and for continuing to draw attention to the critical importance of improving energy efficiency throughout our nation and around the world. I also want to take a moment to thank you for earlier today recognizing our Assistant Secretary of Energy Efficiency and Renewable Energy Andy Karsner. He has done a tremendous job in changing the way we bring government-sponsored research and development into the marketplace, and I am confident his efforts to accelerate the commercialization of advanced

312

Selling Texas: an internship at the Texas Department of Agriculture  

E-Print Network (OSTI)

"SELLING TEXAS," an overview of the Texas Department of Agriculture and its Marketing and Agribusiness Division, takes a look at how the organization promotes Texas as the best of the best, and considers what would make the campaign better. Enriched by abundant resources and industrious people, Texas is a modem worldwide leader in the export of many raw and processed agricultural products ... Your market is our market ... Supply, quality and diversity--that's Texas agriculture" (TDA, 1996a). The Texas Department of Agriculture's Marketing and Agribusiness Development Division has a unique opportunity to encourage businesses to locate in Texas (and thereby boost the Texas economy) as a result of the State's mystique. For instance, the number of brand names including "Texas" places it in the top five-among other U.S. states in terms of popularity as an advertising tool. "Savor all the flavors of Texas ... Bred to survive and flourish in the unique Texas climate ... The vast ranges and fertile soils of Texas produce the world's finest fibers..." (TDA, 1996c). The division's BLJY TEXAS cwnpaign also promotes Texas products to its residents with whom Texas pride and loyalty are an arguable second only to American patriotism. The BUY TEXAS initiative is an umbrella consumer marketing effort that "encourages ocnsumers to seek and purchase products grown, sewn, and processed in Texas" (Marketing and Agribusiness Development, 1996) including Taste of Texas foods, Vintage Texas wines, TEXAS GROAN plants, and Naturally TEXAS apparel.

Cross, Kelly D.

1997-01-01T23:59:59.000Z

313

Texas Emerging Technology Fund | Open Energy Information  

Open Energy Info (EERE)

Texas Emerging Technology Fund Jump to: navigation, search Name Texas Emerging Technology Fund Place Texas Product String representation "The Texas Emerg ... hnology fields." is...

314

Texas Department of Transportation | Open Energy Information  

Open Energy Info (EERE)

Texas Department of Transportation Jump to: navigation, search Logo: Texas Department of Transportation Name Texas Department of Transportation Short Name TxDOT Place Austin, Texas...

315

Energy Savings Assessment for the Robert E. Johnson State Office Building in Austin, Texas  

E-Print Network (OSTI)

U.S. businesses and institutions spend an estimated $175 billion per year for energy. Of that, the fraction under performance contracts and energy service agreements is currently growing, aided by cheaper monitoring technology and integration with EMCS systems. Energy simulation programs are used both for estimating potential savings as well as to help verify savings from retrofits actually installed. The potential accuracy afforded by today's energy simulation programs is high. Yet the reliability of the results is frequently compromised by a lack of certainty that the simulations reflect actual conditions. Although there is little documentation on current methods to verify energy savings in buildings, the International Performance Measurement and Verification Protocol (IPMVP), developed by the Department of Energy (DOE), provides best practice techniques available for verifying results of energy efficiency, water efficiency, and renewable energy projects. This paper presents a method for verifying the energy savings of a newly constructed building using a baseline simulation model calibrated to the measured whole-building energy consumption to determined the independent and combined effect of the stated efficient components installed in the building. In this paper the results show that the energy savings resulting from the new design reduced the energy use by 46% when compared to similar state office buildings.

Sylvester, K. E.; Haberl, J. S.; Song, S.; Turner, W. D.

2002-01-01T23:59:59.000Z

316

CX-003469: Categorical Exclusion Determination | Department of...  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Date: 08232010 Location(s): Johnson County, Texas Office(s): Fossil Energy, National Energy Technology Laboratory Field testing of Cyclone Production Tool Pump in EOG well...

317

Texas Transportation Institute Texas A&M University System  

E-Print Network (OSTI)

Texas Transportation Institute Texas A&M University System Barbara Lorenz Program Coordinator Southwest Region University Transportation Center Texas Transportation Institute Texas A&M University System College Station, Texas 77843 b-lorenz@tamu.edu (979) 845-8861 Biography Barbara Lorenz is the Program

318

THE UNIVERSITY OF TEXAS AT AUSTIN, TEXAS, USA  

E-Print Network (OSTI)

THE UNIVERSITY OF TEXAS AT AUSTIN AUSTIN, TEXAS, USA UNIVERSITY-WIDE PARTNER Fast facts Language university website. Location The University of Texas is located in the centre of Austin. The city is situated on the banks of the Colorado River in Central Texas. This part of Texas is also known as the Hill Country

Hopkins, Gail

319

Energy Efficiency/Renewable Energy Impact in the Texas Emissions Reduction Plan (TERP), Volume III - Appendix, Annual Report to the Texas Commission on Environmental Quality, January 2006 - June 2007  

E-Print Network (OSTI)

The Energy Systems Laboratory, at the Texas Engineering Experiment Station of the Texas A&M University System, in fulfillment of its responsibilities under Texas Health and Safety Code Ann. 388.003 (e), Vernon Supp. 2002, submits its fifth annual report, Energy Efficiency/Renewable Energy (EE/RE) Impact in the Texas Emissions Reduction Plan to the Texas Commission on Environmental Quality. The report is organized in three volumes. Volume I Summary Report provides an executive summary and overview; Volume II Technical Report provides a detailed report of activities, methodologies and findings; Volume III Technical Appendix contains detailed data from simulations for each of the counties included in the analysis.

Degelman, L.; Mukhopadhyay, J.; McKelvey, K.; Montgomery, C.; Baltazar-Cervantes, J. C.; Liu, Z.; Ahmed, M.; Verdict, M.; Muns, S.; Fitzpatrick, T.; Gilman, D.; Yazdani, B.; Culp, C.; Haberl, J. S.

2009-02-20T23:59:59.000Z

320

Energy Efficiency/Renewable Energy Impact in the Texas Emissions Reduction Plan (TERP), Volume II - Technical Report, Annual Report to the Texas Commission on Environmental Quality, January 2006 - June 2007  

E-Print Network (OSTI)

The Energy Systems Laboratory, at the Texas Engineering Experiment Station of the Texas A&M University System, in fulfillment of its responsibilities under Texas Health and Safety Code Ann. 388.003 (e), Vernon Supp. 2002, submits its fifth annual report, 'Energy Efficiency/Renewable Energy (EE/RE) Impact in the Texas Emissions Reduction Plan' to the Texas Commission on Environmental Quality. This report is organized in three volumes: Volume I - Summary Report - provides an executive summary and overview; Volume II - Technical Report - provides a detailed report of activities, methodologies and findings; Volume III - Technical Appendix - contains detailed data from simulations for each of the counties included in the analysis.

Degelman, L.; Mukhopadhyay, J.; McKelvey, K.; Montgomery, C.; Baltazar-Cervantes, J. C.; Liu, Z.; Ahmed, M.; Verdict, M.; Muns, S.; Fitzpatrick, T.; Gilman, D.; Yazdani, B.; Culp, C.; Haberl, J. S.

2007-08-01T23:59:59.000Z

Note: This page contains sample records for the topic "johnson county texas" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


321

Energy Efficiency/Renewable Energy Impact in the Texas Emissions Reduction Plan (TERP), Volume II--Technical Report, Annual Report to the Texas Commission on Environmental Quality January 2008-December 2008  

E-Print Network (OSTI)

The Energy Systems Laboratory, at the Texas Engineering Experiment Station of the Texas A&M University System, in fulfillment of its responsibilities under Texas Health and Safety Code Ann. 388.003 (e), Vernon Supp. 2002, submits its seventh annual report, 'Energy Efficiency/Renewable Energy (EE/RE) Impact in the Texas Emissions Reduction Plan' to the Texas Commission on Environmental Quality. This report is organized in three volumes: Volume I - Summary Report - provides an executive summary and overview; Volume II - Technical Report - provides a detailed report of activities, methodologies and findings; Volume III - Technical Appendix - contains detailed data from simulations for each of the counties included in the analysis.

Haberl, Jeff; Culp, Charles; Yazdani, Bahman; Gilman, Don; Muns, Shirley; Liu, Zi; Baltazar, Juan-Carlos; Mukhopadhyay, Jaya; Degelman, Larry; Claridge, David

2009-12-01T23:59:59.000Z

322

Energy Efficiency/Renewable Energy Impact in the Texas Emissions Reduction Plan (TERP), Volume I - Summary Report, Annual Report to the Texas Commission on Environmental Quality, January 2006 - June 2007  

E-Print Network (OSTI)

The Energy Systems Laboratory, at the Texas Engineering Experiment Station of the Texas A&M University System, in fulfillment of its responsibilities under Texas Health and Safety Code Ann. 388.003 (e), Vernon Supp. 2002, submits its fifth annual report, 'Energy Efficiency/Renewable Energy (EE/RE) Impact in the Texas Emissions Reduction Plan' to the Texas Commission on Environmental Quality. This report is organized in three volumes: Volume I - Summary Report - provides an executive summary and overview; Volume II - Technical Report - provides a detailed report of activities, methodologies and findings; Volume III - Technical Appendix - contains detailed data from simulations for each of the counties included in the analysis.

Verdict, M.; Baltazar-Cervantes, J. C.; Yazdani, B.; Ahmed, M.; Degelman, L.; Muns, S.; Fitzpatrick, T.; Gilman, D.; Liu, Z.; Mukhopadhyay, J.; McKelvey, K.; Montgomery, C.; Haberl, J. S.; Culp, C.

2008-01-23T23:59:59.000Z

323

Energy Efficiency/Renewable Energy Impact in the Texas Emissions Reduction Plan (TERP) Volume I-Summary Report, Annual Report to the Texas Commission on Environmental Quality, January 2009-December 2009  

E-Print Network (OSTI)

The Energy Systems Laboratory, at the Texas Engineering Experiment Station of the Texas A&M University System, in fulfillment of its responsibilities under Texas Health and Safety Code Ann. 388.003 (e), Vernon Supp. 2002, submits its eighth annual report, 'Energy Efficiency/Renewable Energy (EE/RE) Impact in the Texas Emissions Reduction Plan' to the Texas Commission on Environmental Quality. This report is organized in three volumes: Volume I - Summary Report - provides an executive summary and overview; Volume II - Technical Report - provides a detailed report of activities, methodologies and findings; Volume III - Technical Appendix - contains detailed data from simulations for each of the counties included in the analysis.

Haberl, J.; Culp, C.; Yazdani, B.; Lewis, C.; Liu, Z.; Baltazar-Cervantes, J. C.; Mukhopadhyay, J.; Gilman, D.; Degelman, L.; McKelvey, K.; Claridge, D.

2010-12-01T23:59:59.000Z

324

Energy Efficiency/Renewable Energy Impact in the Texas Emissions Reduction Plan (TERP), Volume I--Summary Report, Annual Report to the Texas Commission on Environmental Quality, January 2008-December 2008  

E-Print Network (OSTI)

The Energy Systems Laboratory, at the Texas Engineering Experiment Station of the Texas A&M University System, in fulfillment of its responsibilities under Texas Health and Safety Code Ann. 388.003 (e), Vernon Supp. 2002, submits its seventh annual report, 'Energy Efficiency/Renewable Energy (EE/RE) Impact in the Texas Emissions Reduction Plan' to the Texas Commission on Environmental Quality. This report is organized in three volumes: Volume I - Summary Report - provides an executive summary and overview; Volume II - Technical Report - provides a detailed report of activities, methodologies and findings; Volume III - Technical Appendix - contains detailed data from simulations for each of the counties included in the analysis.

Baltazar, Juan-Carlos; Claridge, David; Yazdani, Bahman; Mukhopadhyay, Jaya; Liu, Zi; Muns, Shirley; Gilman, Don; Degelman, Larry; Haberl, Jeff; Culp, Charles

2009-12-01T23:59:59.000Z

325

Energy Efficiency/Renewable Energy Impact in the Texas Emissions Reduction Plan (TERP) Volume III- Technical Appendix, Annual Report to the Texas Commission on Environmental Quality, January 2009 December 2009  

E-Print Network (OSTI)

The Energy Systems Laboratory, at the Texas Engineering Experiment Station of the Texas A&M University System, in fulfillment of its responsibilities under Texas Health and Safety Code Ann. 388.003 (e), Vernon Supp. 2002, submits its eighth annual report, 'Energy Efficiency/Renewable Energy (EE/RE) Impact in the Texas Emissions Reduction Plan' to the Texas Commission on Environmental Quality. This report is organized in three volumes: Volume I - Summary Report - provides an executive summary and overview; Volume II - Technical Report - provides a detailed report of activities, methodologies and findings; Volume III - Technical Appendix - contains detailed data from simulations for each of the counties included in the analysis.

Haberl, J.; Culp, C.; Yazdani, B.; Liu, Z.; Baltazar-Cervantes, J. C.; Gilman, D.; Lewis, C.; McKelvey, K.; Mukhopadhyay, J.; Degelman, L.

2010-12-01T23:59:59.000Z

326

Texas Retail Energy, LLC (Texas) | Open Energy Information  

Open Energy Info (EERE)

Texas) Jump to: navigation, search Name Texas Retail Energy, LLC Place Texas Utility Id 50046 References EIA Form EIA-861 Final Data File for 2010 - File220101 LinkedIn...

327

Energy Efficiency/Renewable Energy Impact in the Texas Emissions Reduction Plan (TERP), Volume III--Technical Appendix  

E-Print Network (OSTI)

The Energy Systems Laboratory (Laboratory), at the Texas Engineering Experiment Station of the Texas A&M University System, in fulfillment of its responsibilities under Texas Health and Safety Code Ann. 388.003 (e), Vernon Supp. 2002, submits its seventh annual report, Energy Efficiency/Renewable Energy (EE/RE) Impact in the Texas Emissions Reduction Plan to the Texas Commission on Environmental Quality. The report is organized in three volumes: Volume I Summary Report provides an executive summary and overview; Volume II Technical Report provides a detailed report of activities, methodologies and findings; Volume III Technical Appendix contains detailed data from simulations for each of the counties included in the analysis.

Haberl, Jeff; Culp, Charles; Yazdani, Bahman; Gilman, Don; Muns, Shirley; Liu, Zi; Baltazar-Cervantes, Juan-Carlos; Mukhopadhyay, Jaya; Degelman, Larry; Claridge, David

2009-12-01T23:59:59.000Z

328

Texas Crop Profile: Onions  

E-Print Network (OSTI)

This profile of onion production in Texas gives an overview of basic commodity information; discusses insect, disease and weed pests; and covers cultural and chemical control methods.

Hall, Kent D.; Holloway, Rodney L.; Smith, Dudley

2000-04-12T23:59:59.000Z

329

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Blues The Hornsby Bend Biosolids Management Plant in Austin, Texas in utilizing biogas generation to reduce energy costs and become self-sufficient. January 11, 2012...

330

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

development. Some Texas property owners may be eligible to receive refunds of state sales and use taxes and franchise taxes for paying local school property taxes, subject to...

331

Algae biofuels in Texas.  

E-Print Network (OSTI)

??Texas the energy center of the world is emerging as a pioneer in algae biodiesel research and production. There are a number of (more)

Salpekar, Ashwini

2010-01-01T23:59:59.000Z

332

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

October 18, 2010 CX-004242: Categorical Exclusion Determination Colonias for Microgrids (Texas) Office of Electricity Delivery and Energy Reliability 14.09 CX(s) Applied:...

333

Retail Unbundling - Texas  

U.S. Energy Information Administration (EIA)

Retail Unbundling - Texas. Status: The state has no active residential customer choice programs, but some municipalities have formed cooperative arrangements with ...

334

OpenEI - Texas  

Open Energy Info (EERE)

http:en.openei.orgdatasetstaxonomyterm690 en NREL GIS Data: Texas High Resolution Wind Resource http:en.openei.orgdatasetsnode893

Abstract: Annual average...

335

,"Texas Natural Gas Prices"  

U.S. Energy Information Administration (EIA) Indexed Site

,"Workbook Contents" ,"Texas Natural Gas Prices" ,"Click worksheet name or tab at bottom for data" ,"Worksheet Name","Description"," Of Series","Frequency","Latest Data for"...

336

Texas Natural Gas Prices  

U.S. Energy Information Administration (EIA) Indexed Site

Ohio Oklahoma Oregon Pennsylvania Rhode Island South Carolina South Dakota Tennessee Texas Utah Vermont Virginia Washington West Virginia Wisconsin Wyoming Period: Monthly...

337

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Categorical Exclusion Determination Clean Start - Development of a National Liquid Propane Refueling Network CX(s) Applied: B5.22 Date: 12202011 Location(s): Texas...

338

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Determination Field Testing and Diagnostics of Radial-Jet Well-Stimulation for Enhanced Oil Recovery from Marginal Reserves Date: 02112011 Location(s): The Woodlands, Texas...

339

,"Texas Natural Gas Prices"  

U.S. Energy Information Administration (EIA) Indexed Site

Name","Description"," Of Series","Frequency","Latest Data for" ,"Data 1","Texas Natural Gas Prices",13,"Annual",2012,"6301967" ,"Release Date:","10312013" ,"Next Release...

340

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

No Significant Impact Proposed High Explosive Pressing Facility Pantex Plant, Amarillo, Texas June 2, 2008 EA-1613: Final Environmental Assessment Proposed High Explosive Pressing...

Note: This page contains sample records for the topic "johnson county texas" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


341

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Partnership for Energy. July 12, 2013 City of Plano - Smart Energy Loan Program (Texas) '''''Note: The City of Plano is currently offering a Streamlined Emergency Process...

342

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

a checklist from Leadership in Energy and Environmental Design (LEED) , Green Built Texas, or any other approved green building standard. The checklist must show that the...

343

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

mechanisms. July 12, 2013 Austin - Renewables Portfolio Standard The City of Austin, Texas, has been an early adopter of the Renewable Portfolio Standard (RPS) regulatory...

344

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Impact Proposed Gas Main and Distribution System Upgrade, Pantex Plant, Amarillo, Texas August 1, 2005 EA-1533: Final Environmental Assessment Proposed Gas Main and...

345

Municipal Utility Districts (Texas)  

Energy.gov (U.S. Department of Energy (DOE))

Municipal Utility Districts, regulated by the Texas Commission on Environmental Quality, may be created for the following purposes: (1) the control, storage, preservation, and distribution of its...

346

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Sharyland Utilities - Commercial Standard Offer Program (Texas) Sharyland Utilities offers its Commercial Standard Offer Program to encourage business customers of all sizes to...

347

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

units. July 12, 2013 Magic Valley Electric Cooperative - ENERGY STAR Builders Program (Texas) Magic Valley Electric Cooperative's (MVEC) ENERGY STAR Builders Program offers a...

348

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Announces Additional 208,759,900 for Local Energy Efficiency Improvements in Texas Block Grants to Support Jobs, Cut Energy Bills, and Increase Energy Independence March...

349

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

& Refrigeration Institute directory. July 12, 2013 Coastal Public Lands Management Act (Texas) The coastal public lands of the state are managed in accordance with the following...

350

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

of Electric Technology, Technology Solutions for Wind Integration in ERCOT, Houston, Texas September 30, 2010 Bright Green Spot: Fort Worth Library The library is seeing...

351

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

May 12, 2010 CX-002249: Categorical Exclusion Determination North Central Texas Alternative Fuel and Advanced Technology Investments CX(s) Applied: B5.1 Date: 05122010...

352

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

8, 2010 CX-001430: Categorical Exclusion Determination North Central Texas Alternative Fuel and Advanced Technology Investments CX(s) Applied: A7, B5.1 Date: 04082010...

353

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

May 18, 2011 Thermal Energy Corporation's (TECO) Control Room | Photo Courtesy of the Texas Medical Center The World's Largest Medical Center is Now Among the Most Energy Efficient...

354

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Plano - Smart Energy Loan Program (Texas) '''''Note: The City of Plano is currently offering a Streamlined Emergency Process for this Program.''''' July 12, 2013 City of Plano -...

355

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

17, 2012 An aerial view of the Hornsby Bend Biosolids Management Plant in Austin, Texas. | Photo courtesy of Austin Water. Austin Using Green Innovation to Beat the Utility...

356

City of Johnson, Kansas (Utility Company) | Open Energy Information  

Open Energy Info (EERE)

Johnson Johnson Place Kansas Utility Id 9776 Utility Location Yes Ownership M NERC Location SPP NERC SPP Yes Operates Generating Plant Yes Activity Generation Yes Activity Distribution Yes References EIA Form EIA-861 Final Data File for 2010 - File1_a[1] LinkedIn Connections CrunchBase Profile No CrunchBase profile. Create one now! This article is a stub. You can help OpenEI by expanding it. Utility Rate Schedules Grid-background.png City Residential Lighting and General Appliance Service Residential Commercial and Small Power Service Commercial Power Service Industrial Average Rates Residential: $0.1220/kWh Commercial: $0.1190/kWh Industrial: $0.1010/kWh References ↑ "EIA Form EIA-861 Final Data File for 2010 - File1_a" Retrieved from "http://en.openei.org/w/index.php?title=City_of_Johnson,_Kansas_(Utility_Company)&oldid=409782

357

Johnson Controls Energy Efficiency Forum | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Johnson Controls Energy Efficiency Forum Johnson Controls Energy Efficiency Forum Johnson Controls Energy Efficiency Forum June 13, 2007 - 1:40pm Addthis Remarks for Energy Secretary Samuel Bodman It is good to be here with all of you. Over the past year I have spent a lot of time talking with foreign energy ministers, leaders in industry, members of Congress, state and local officials and ordinary citizens about the President's plan to enhance energy security. It's been a real education. I've come to the conclusion that energy policy is like the weather: everyone has an opinion on it. but expects someone else to do something about it. And when it says "United States Secretary of Energy" on your business card, like it does on mine, the person they expect to do something about it is me.

358

Village of Johnson, Vermont (Utility Company) | Open Energy Information  

Open Energy Info (EERE)

Johnson Village of Johnson Village of Place Vermont Service Territory Vermont Website www.townofjohnson.com/Gov Green Button Reference Page www.efficiencyvermont.com Green Button Committed Yes Utility Id 9806 Utility Location Yes Ownership M NERC Location NPCC NERC NPCC Yes ISO NE Yes Activity Distribution Yes References EIA Form EIA-861 Final Data File for 2010 - File1_a[1] LinkedIn Connections CrunchBase Profile No CrunchBase profile. Create one now! This article is a stub. You can help OpenEI by expanding it. Utility Rate Schedules Grid-background.png Johnson State College Commercial Standard Large Commercial Commercial Standard Public Authority Commercial Standard Residential Residential Standard Small Commercial Commercial Standard Street Light Lighting Average Rates Residential: $0.1610/kWh

359

Texas Regions | U.S. DOE Office of Science (SC)  

Office of Science (SC) Website

Texas Regions Texas Regions National Science Bowl® (NSB) NSB Home About High School Middle School Middle School Students Middle School Coaches Middle School Regionals Middle School Rules, Forms, and Resources Attending National Event Volunteers 2013 Competition Results News Media WDTS Home Contact Information National Science Bowl® U.S. Department of Energy SC-27/ Forrestal Building 1000 Independence Ave., SW Washington, DC 20585 P: 202-586-6702 E: National.Science.Bowl@science.doe.gov Middle School Regionals Texas Regions Print Text Size: A A A RSS Feeds FeedbackShare Page Texas Coaches can review the middle school regional locations listed below. Please note: Registrations are based on the location of your school. Please be sure to select the regional that is designated for your school's state, county, city, or district.

360

Texas Regions | U.S. DOE Office of Science (SC)  

Office of Science (SC) Website

Texas Regions Texas Regions National Science Bowl® (NSB) NSB Home About High School High School Students High School Coaches High School Regionals High School Rules, Forms, and Resources Middle School Attending National Event Volunteers 2013 Competition Results News Media WDTS Home Contact Information National Science Bowl® U.S. Department of Energy SC-27/ Forrestal Building 1000 Independence Ave., SW Washington, DC 20585 P: 202-586-6702 E: National.Science.Bowl@science.doe.gov High School Regionals Texas Regions Print Text Size: A A A RSS Feeds FeedbackShare Page Texas Coaches can review the high school regional locations listed below. Please note: Registrations are based on the location of your school. Please be sure to select the regional that is designated for your school's state, county, city, or district.

Note: This page contains sample records for the topic "johnson county texas" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


361

Johnson Controls and Midlothian Independent School District: SPP Success  

NLE Websites -- All DOE Office Websites (Extended Search)

Johnson Controls and Midlothian Independent School District: SPP Johnson Controls and Midlothian Independent School District: SPP Success Story Secondary menu About us Press room Contact Us Portfolio Manager Login Facility owners and managers Existing buildings Commercial new construction Industrial energy management Small business Service providers Service and product providers Verify applications for ENERGY STAR certification Design commercial buildings Energy efficiency program administrators Commercial and industrial program sponsors Associations State and local governments Federal agencies Tools and resources Training In This Section Campaigns Commercial building design Communications resources Energy management guidance Financial resources Portfolio Manager Products and purchasing Recognition Research and reports Service and product provider (SPP) resources

362

Texas Area | Open Energy Information  

Open Energy Info (EERE)

Area Area Jump to: navigation, search Contents 1 Clean Energy Clusters in the Texas Area 1.1 Products and Services in the Texas Area 1.2 Research and Development Institutions in the Texas Area 1.3 Networking Organizations in the Texas Area 1.4 Investors and Financial Organizations in the Texas Area 1.5 Policy Organizations in the Texas Area Clean Energy Clusters in the Texas Area Products and Services in the Texas Area Loading map... {"format":"googlemaps3","type":"ROADMAP","types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"limit":500,"offset":0,"link":"all","sort":[""],"order":[],"headers":"show","mainlabel":"","intro":"","outro":"","searchlabel":"\u2026

363

Restaurant Fire Houston Texas 2000  

Science Conference Proceedings (OSTI)

Houston Fast Food Restaurant Fire, Texas, 2000. On February 14, 2000, a fire in a one story restaurant in Texas claimed the lives of two firefighters. ...

2012-07-12T23:59:59.000Z

364

Texas Surface Coal Mining and Reclamation Act (Texas) | Department of  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Texas Surface Coal Mining and Reclamation Act (Texas) Texas Surface Coal Mining and Reclamation Act (Texas) Texas Surface Coal Mining and Reclamation Act (Texas) < Back Eligibility Utility Fed. Government Commercial Investor-Owned Utility Industrial Construction Municipal/Public Utility Local Government Rural Electric Cooperative Tribal Government Program Info State Texas Program Type Environmental Regulations Siting and Permitting Provider Railroad Commission of Texas The Railroad Commission of Texas regulates all surface mining activities for the extraction of coal. The Commission acts with the authority of the Texas Surface Coal Mining and Reclamation Act, which establishes that the state of Texas has exclusive jurisdiction over the regulation of surface coal mining and reclamation operations in the state, in accordance with the

365

,"Texas Natural Gas Summary"  

U.S. Energy Information Administration (EIA) Indexed Site

1: Prices" "Sourcekey","N3050TX3","N3010TX3","N3020TX3","N3035TX3","N3045TX3" "Date","Natural Gas Citygate Price in Texas (Dollars per Thousand Cubic Feet)","Texas Price of...

366

Texas | OpenEI  

Open Energy Info (EERE)

Texas Texas Dataset Summary Description Abstract: Annual average wind resource potential for the state of Texas. Purpose: Provide information on the wind resource development potential within the state of Texas. Supplemental_Information: This data set has been validated by NREL and wind energy meteorological consultants. However, the data is not suitable for micro-siting potential development projects. This shapefile in a UTM zone 19, datum WGS 84 projection system. Source National Renewable Energy Laboratory (NREL) Date Released November 30th, 2003 (10 years ago) Date Updated October 14th, 2010 (4 years ago) Keywords GIS NREL shapefile Texas wind Data application/zip icon Shapefile (zip, 315.8 KiB) Quality Metrics Level of Review Some Review Comment Temporal and Spatial Coverage

367

Texas Watershed Coordinator Roundtable Blackland Research Extension Center Temple, Texas  

E-Print Network (OSTI)

Texas Watershed Coordinator Roundtable Blackland Research Extension Center Temple, Texas January 25, 2011 Robert Adams Alan Plummer Associates, Inc. radams@apaienv.com Ashley Alexander Texas State Soil Station, Texas Tech University tom.arsuffi@ttu.edu Jenna Barrett Brazos River Authority jbarrett

368

Texas AgriLife Extension Service and Texas AgriLife Research, and Texas Veterinary Medical Diagnostic  

E-Print Network (OSTI)

Vendor Guide Texas AgriLife Extension Service and Texas AgriLife Research, and Texas Veterinary Medical Diagnostic Laboratory are members of The Texas A&M University System. All purchases made by Texas A&M AgriLife follow State Law, the Texas A&M University System Procurement Code, and the Texas A

369

TEXAS AGRILIFE RESEARCH Regent Fellows  

E-Print Network (OSTI)

TEXAS AGRILIFE RESEARCH Regent Fellows 1997/98 Dr. Fuller W. Bazer, Professor, Department of Animal, Professor, Texas AgriLife Research and Extension Center at Overton Dr. William R. Ocumpaugh, Professor, Texas AgriLife Research Station at Beeville 1999/2000 Dr. Darrell N. Ueckert, Professor, Texas Agri

370

Fannin County Electric Coop | Open Energy Information  

Open Energy Info (EERE)

Fannin County Electric Coop Fannin County Electric Coop Jump to: navigation, search Name Fannin County Electric Coop Place Texas Utility Id 6173 Utility Location Yes Ownership C NERC Location TRE NERC ERCOT Yes Activity Distribution Yes References EIA Form EIA-861 Final Data File for 2010 - File1_a[1] LinkedIn Connections CrunchBase Profile No CrunchBase profile. Create one now! This article is a stub. You can help OpenEI by expanding it. Utility Rate Schedules Grid-background.png Residential Residential Security Lighting-175 Watt Mercury Vapor Lighting Small Commercial Commercial Average Rates Residential: $0.1210/kWh Commercial: $0.1010/kWh Industrial: $0.1320/kWh References ↑ "EIA Form EIA-861 Final Data File for 2010 - File1_a" Retrieved from "http://en.openei.org/w/index.php?title=Fannin_County_Electric_Coop&oldid=410679

371

Texas Nuclear Profile - South Texas Project  

U.S. Energy Information Administration (EIA)

snpt3tx6251 1,280 11,304 100.8 PWR 9,823 87.6 2,560 21,127 94.2 South Texas Project Unit Type Data for 2010 PWR = Pressurized Light Water Reactor. Note: Totals may ...

372

Disbursement of $65 million to the State of Texas for construction of a Regional Medical Technology Center at the former Superconducting Super Collider Site, Waxahachie, Texas  

SciTech Connect

As part of a settlement agreement between the US DOE and the State of Texas, DOE proposes to transfer $65 million of federal funds to the Texas National Research Laboratory Commission (TNLRC) for construction of the Regional Medical Technology Center (RMTC) to be located in Ellis County, Texas. The RMTC would be a state-of-the-art medical facility for proton cancer therapy, operated by the State of Texas in conjunction with the University of Texas Southwestern Medical Center. The RMTC would use the linear accelerator assets of the recently terminated DOE Superconducting Super Collider Project to accelerate protons to high energies for the treatment of cancer patients. The current design provides for treatment areas, examination rooms, support laboratories, diagnostic imaging equipment, and office space as well as the accelerators (linac and synchrotron) and beam steering and shaping components. The potential environmental consequences of the proposed action are expected to be minor.

NONE

1995-05-01T23:59:59.000Z

373

South Texas Blending | Open Energy Information  

Open Energy Info (EERE)

Login | Sign Up Search Page Edit with form History Facebook icon Twitter icon South Texas Blending Jump to: navigation, search Name South Texas Blending Place Laredo, Texas Zip...

374

Fermilab Today | University of Texas at Arlington  

NLE Websites -- All DOE Office Websites (Extended Search)

Texas at Arlington Aug. 22, 2012 NAME: University of Texas at Arlington HOME TOWN: Arlington, Texas MASCOT: Blaze the Mustang SCHOOL COLORS: Orange and blue COLLABORATING AT...

375

Texas Gasoline Price Data  

NLE Websites -- All DOE Office Websites (Extended Search)

Texas Exit Fueleconomy.gov The links below are to pages that are not part of the fueleconomy.gov. We offer these external links for your convenience in accessing additional...

376

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Categorical Exclusion Determination Deactivation and Decommissioning of the North Compost Tent CX(s) Applied: B1.23 Date: 04222010 Location(s): Amarillo, Texas Office(s):...

377

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Golden Field Office May 27, 2010 CX-002520: Categorical Exclusion Determination Texas Propane Fleet Pilot Program CX(s) Applied: A7, B5.1 Date: 05272010 Location(s): Grapevine,...

378

Pecos River Compact (Texas)  

Energy.gov (U.S. Department of Energy (DOE))

This legislation authorizes the state's entrance into the Pecos River Compact, a joint agreement between the states of New Mexico and Texas. The compact is administered by the Pecos River Compact...

379

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Storage of Carbon Dioxide CX(s) Applied: A9, A11 Date: 02072010 Location(s): Austin, Texas Office(s): Fossil Energy, National Energy Technology Laboratory January 29, 2010...

380

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Mound Raw Water Intake Structure CX(s) Applied: B1.3 Date: 12292009 Location(s): Texas Office(s): Fossil Energy, Strategic Petroleum Reserve Field Office December 29, 2009...

Note: This page contains sample records for the topic "johnson county texas" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


381

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

of Project Objectives) CX(s) Applied: B3.1 Date: 06142010 Location(s): Austin, Texas Office(s): Fossil Energy, National Energy Technology Laboratory June 10, 2010...

382

Red River Compact (Texas)  

Energy.gov (U.S. Department of Energy (DOE))

The Red River Compact Commission administers the Red River Compact to ensure that Texas receives its equitable share of quality water from the Red River and its tributaries as apportioned by the...

383

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

of Resources in the U.S. CX(s) Applied: A9, B3.2, B3.11 Date: 11302011 Location(s): Texas Offices(s): Golden Field Office November 28, 2011 CX-007509: Categorical Exclusion...

384

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

and Integration CX(s) Applied: B1.7, B4.6 Date: 07212011 Location(s): Amarillo, Texas Office(s): Pantex Site Office July 20, 2011 Today's Forecast: Improved Wind...

385

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Study CX(s) Applied: A9, A11, B5.1 Date: 04302010 Location(s): Cedar Hill, Texas Office(s): Energy Efficiency and Renewable Energy April 30, 2010 CX-002188:...

386

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

15, 2010 CX-001820: Categorical Exclusion Determination City of Houston, Texas (TX) Energy Efficiency and Conservation Block Grant (EECBG) CX(s) Applied: A9, A11, B5.1 Date: 0415...

387

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

19, 2010 Illinois and Texas Towns See Weatherization Boost "It cropped about a hundred bucks off my bill in the cold, cold winter," says Springfield resident Donald Dagget, a...

388

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

16, 2010 Wind turbines like this will grace Gabe Nesbitt Community Park in McKinney, Texas, thanks to an Energy Efficiency and Conservation Block Grant | Photo courtesy of...

389

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Utilities Board, Brownsville to Mexico 138 kV Transmission Line Project, Brownsville, Texas February 25, 2000 EIS-0200: Record of Decision Treatment and Disposal of Low-Level...

390

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

School Photovoltaic System CX(s) Applied: B5.1 Date: 02252010 Location(s): Austin, Texas Office(s): Energy Efficiency and Renewable Energy, Golden Field Office February 25,...

391

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

28, 2010 CX-003175: Categorical Exclusion Determination North Central Texas Alternative Fuel and Advanced Technology Investments CX(s) Applied: A1, A7, B5.1 Date: 07282010...

392

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Process described in detail in the Program Manual. July 12, 2013 Cavern Protection (Texas) It is public policy of the state to provide for the protection of caves on or under...

393

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Buildings 11-10 and 11-30 CX(s) Applied: B1.23 Date: 07072010 Location(s): Amarillo, Texas Office(s): NNSA-Headquarters, Pantex Site Office July 6, 2010 CX-002907: Categorical...

394

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

EA-1090: Finding of No Significant Impact Disbursement of 65 Million to the State of Texas for Construction of a Regional Medical Technology Center May 1, 1995 EA-1090: Final...

395

Texas | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Crops CX(s) Applied: B3.6, B5.1 Date: 08252010 Location(s): College Station, Texas Office(s): Energy Efficiency and Renewable Energy, Golden Field Office August 25, 2010...

396

Cook County- LEED Requirements for County Buildings  

Energy.gov (U.S. Department of Energy (DOE))

In 2002, Cook County enacted an ordinance requiring all new county buildings and all retrofitted county buildings to be built to LEED standards. Specifically, all newly constructed buildings and...

397

12-8-09_Final_Testimony_(Johnson).pdf  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

DR. KRISTINA M. JOHNSON DR. KRISTINA M. JOHNSON UNDER SECRETARY U.S. DEPARTMENT OF ENERGY BEFORE THE SUBCOMMITTEE ON ENERGY COMMITTEE ON ENERGY AND NATURAL RESOURCES UNITED STATES SENATE DECEMBER 8, 2009 2 Madam Chairman, Ranking Member Risch, and Members of the Subcommittee, thank you for the opportunity to appear before you today to discuss several draft energy bills. We deeply appreciate your interest in the views of the Department of Energy (The Department) on these bills. Over many years and many Administrations, the Department has enjoyed an open and productive relationship with this Committee, and those of us serving under President Obama certainly want to continue and strengthen that partnership. In recent years, Congress has made a very substantial and positive investment in clean

398

City of Johnson City, Tennessee (Utility Company) | Open Energy Information  

Open Energy Info (EERE)

Johnson City City of Johnson City City of Place Tennessee Utility Id 9777 Utility Location Yes Ownership M NERC Location SERC NERC SERC Yes Activity Distribution Yes References EIA Form EIA-861 Final Data File for 2010 - File1_a[1] Energy Information Administration Form 826[2] LinkedIn Connections CrunchBase Profile No CrunchBase profile. Create one now! This article is a stub. You can help OpenEI by expanding it. Utility Rate Schedules Grid-background.png GENERAL POWER RATE - GSA 1 - 1PH (Rate 440) Commercial GENERAL POWER RATE - GSA 1 - 3PH (Rate 440) Commercial GENERAL POWER RATE - GSA 2 (Rate 550) Commercial GENERAL POWER RATE - GSA 3 (Rate 554) Commercial RS Residential Rate 556 Seasonal - Over 5,000 KW Commercial SECURITY LIGHTS 100 WATT SODIUM VAPOR Lighting SECURITY LIGHTS 250 WATT SODIUM VAPOR Lighting

399

4-23-09_Final_Nomination_Testimony_(Johnson).pdf  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Kristina M. Johnson Kristina M. Johnson Under Secretary for Energy Designee Senate Committee on Energy and Natural Resources April 23, 2009 Chairman Bingaman, Ranking Member Murkowski, and distinguished Members of the Committee, it is an honor and a privilege to appear before you today as President Obama's nominee for Under Secretary of Energy. I wish to thank President Obama for asking me to join his administration as Under Secretary for Energy in the Department of Energy (DOE), and Secretary Chu for his confidence in my appointment. If confirmed, I look forward to working with the Department of Energy team Secretary Chu is assembling to advance the President's plans to restore our economy, secure our energy future and reduce our greenhouse gas (GHG) emissions. I am confident that the team you see here today will work together, tirelessly,

400

Counties | Data.gov  

NLE Websites -- All DOE Office Websites (Extended Search)

Counties Counties Data Apps Challenges Policies Counties Welcome to Counties.Data.gov Bridging information from across the United States. Look at the data, use the apps, join the...

Note: This page contains sample records for the topic "johnson county texas" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


401

EA-1971: Golden Pass LNG Export and Pipeline Project, Texas and Louisiana |  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

71: Golden Pass LNG Export and Pipeline Project, Texas and 71: Golden Pass LNG Export and Pipeline Project, Texas and Louisiana EA-1971: Golden Pass LNG Export and Pipeline Project, Texas and Louisiana SUMMARY The Federal Energy Regulatory Commission (FERC) is preparing, with DOE as a cooperating agency, an EA to analyze the potential environmental impacts of a proposal to construct and operate natural gas liquefaction and export facilities at the existing Golden Pass liquefied natural gas terminal in Jefferson County, Texas. The proposal includes approximately 8 miles of pipeline connecting to existing pipelines in Calcasieu Parish, Louisiana, and Jefferson County. PUBLIC COMMENT OPPORTUNITIES None available at this time. DOCUMENTS AVAILABLE FOR DOWNLOAD October 16, 2013 EA-1971: FERC Notice of Intent to Prepare an Environmental Assessment

402

Johnson Noise Thermometry for Advanced Small Modular Reactors  

Science Conference Proceedings (OSTI)

Temperature is a key process variable at any nuclear power plant (NPP). The harsh reactor environment causes all sensor properties to drift over time. At the higher temperatures of advanced NPPs the drift occurs more rapidly. The allowable reactor operating temperature must be reduced by the amount of the potential measurement error to assure adequate margin to material damage. Johnson noise is a fundamental expression of temperature and as such is immune to drift in a sensors physical condition. In and near the core, only Johnson noise thermometry (JNT) and radiation pyrometry offer the possibility for long-term, high-accuracy temperature measurement due to their fundamental natures. Small Modular Reactors (SMRs) place a higher value on long-term stability in their temperature measurements in that they produce less power per reactor core and thus cannot afford as much instrument recalibration labor as their larger brethren. The purpose of the current ORNL-led project, conducted under the Instrumentation, Controls, and Human-Machine Interface (ICHMI) research pathway of the U.S. Department of Energy (DOE) Advanced SMR Research and Development (R&D) program, is to develop and demonstrate a drift free Johnson noise-based thermometer suitable for deployment near core in advanced SMR plants.

Britton, C.L.,Jr.; Roberts, M.; Bull, N.D.; Holcomb, D.E.; Wood, R.T.

2012-09-15T23:59:59.000Z

403

Johnson Noise Thermometry for Advanced Small Modular Reactors  

SciTech Connect

Temperature is a key process variable at any nuclear power plant (NPP). The harsh reactor environment causes all sensor properties to drift over time. At the higher temperatures of advanced NPPs the drift occurs more rapidly. The allowable reactor operating temperature must be reduced by the amount of the potential measurement error to assure adequate margin to material damage. Johnson noise is a fundamental expression of temperature and as such is immune to drift in a sensor s physical condition. In and near core, only Johnson noise thermometry (JNT) and radiation pyrometry offer the possibility for long-term, high-accuracy temperature measurement due to their fundamental natures. Small, Modular Reactors (SMRs) place a higher value on long-term stability in their temperature measurements in that they produce less power per reactor core and thus cannot afford as much instrument recalibration labor as their larger brethren. The purpose of this project is to develop and demonstrate a drift free Johnson noise-based thermometer suitable for deployment near core in advanced SMR plants.

Britton Jr, Charles L [ORNL; Roberts, Michael [ORNL; Bull, Nora D [ORNL; Holcomb, David Eugene [ORNL; Wood, Richard Thomas [ORNL

2012-10-01T23:59:59.000Z

404

Texas | OpenEI Community  

Open Energy Info (EERE)

Texas Texas Home Alevine's picture Submitted by Alevine(5) Member 29 July, 2013 - 14:46 Texas Legal Review BHFS flora and fauna leasing Legal review permitting roadmap Texas The NREL roadmap team recently met with our legal team Brownstein Hyatt Farber and Schreck (www.bhfs.com) for a review of the Texas portion of the Geothermal Regulatory Roadmap (GRR). BHFS provided excellent suggestions to the Section 3 flowcharts for geothermal leases on Texas state lands. The Texas portion of the GRR now encompasses a flowchart for Texas state land leasing on Permanent School Fund Lands, Texas Parks and Wildlife Department Lands, Land Trade Lands, and Relinquishment Act Lands. Additionally, BHFS provided many other helpful tips for clarifying other issue Kyoung's picture Submitted by Kyoung(155)

405

Energy Efficiency/Renewable Energy Impact in the Texas Emissions Reduction Plan (TERP) Preliminary Report: Integrated NOx Emissions Savings from EE/RE Programs Statewide  

E-Print Network (OSTI)

The Energy Systems Laboratory (Laboratory), at the Texas Engineering Experiment Station of the Texas A&M University System, in fulfillment of its responsibilities under Texas Health and Safety Code Ann. 388.003 (e), Vernon Supp. 2002, submits its eighth annual report, Energy Efficiency/Renewable Energy (EE/RE) Impact in the Texas Emissions Reduction Plan to the Texas Commission on Environmental Quality. The report is organized in three volumes: Volume I Summary Report provides an executive summary and overview; Volume II Technical Report provides a detailed report of activities, methodologies and findings; Volume III Technical Appendix contains detailed data from simulations for each of the counties included in the analysis.

Haberl, J.; Culp, C.; Yazdani, B.; Gilman, D.; Baltazar, J. C.; Lewis, C.; McKelvey, K.; Mukhopadhyay, J.; Degelman, L.; Liu, Z.

2010-07-01T23:59:59.000Z

406

Greater West Texas State Employee Charitable Campaign  

E-Print Network (OSTI)

together we changed lives Greater West Texas State Employee Charitable Campaign 2011 Annual Report campaign information 2011 Local Employee Committee Darcy Pollock (chair), Texas Tech University Health Sciences Center David Abercia, Texas Tech University Dianah Ascencio, Texas Department of Transportation

Rock, Chris

407

Texas A&M University | .EDUconnections  

Office of Scientific and Technical Information (OSTI)

with Texas A&M and DOE Texas A&M's Dwight Look College of Engineering Texas A&M quantum physicist Marlan Scully Texas A&M takes lead on tropical forest evapotranspiration...

408

WKN Texas LLC | Open Energy Information  

Open Energy Info (EERE)

Texas LLC Jump to: navigation, search Name WKN Texas LLC Place Texas Sector Wind energy Product A wind farm developer based in Texas. Originally a subsidiary of Windkraft Nord USA,...

409

Come and Walk Across Texas! with us. The Texas AgriLife Extension Service and the Texas Education Agency are  

E-Print Network (OSTI)

Come and Walk Across Texas! with us. The Texas AgriLife Extension Service and the Texas Education Agency are partnering to Walk Across Texas! Walk Across Texas! is a great way to promote physical for people who work at all levels of Texas' school systems. Senate Bill 891 requires all public school

Wilkins, Neal

410

Texas Clean Air Act (Texas) | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Texas Clean Air Act (Texas) Texas Clean Air Act (Texas) Texas Clean Air Act (Texas) < Back Eligibility Utility Commercial Agricultural Investor-Owned Utility Industrial Construction Municipal/Public Utility Local Government Rural Electric Cooperative Tribal Government Savings Category Alternative Fuel Vehicles Hydrogen & Fuel Cells Program Info State Texas Program Type Environmental Regulations Provider Texas Commission on Environmental Quality This Act is designed to safeguard the state's air resources from pollution by requiring the control and abatement of air pollution and emissions of air contaminants, consistent with the protection of public health, general welfare, and physical property, including the esthetic enjoyment of air resources by the public and the maintenance of adequate visibility. The Act

411

~RESEARCH TEXAS AGRILIFE RESEARCH AT AMARILLO Texas A...  

NLE Websites -- All DOE Office Websites (Extended Search)

RESEARCH TEXAS AGRILIFE RESEARCH AT AMARILLO Texas A&M System Improving Life Through Science and Technology. February 19,2010 MEMORANDUM TO: Mr. J. Brian Bidwell, Prime Contract...

412

Texas's 26th congressional district: Energy Resources | Open Energy  

Open Energy Info (EERE)

6th congressional district: Energy Resources 6th congressional district: Energy Resources Jump to: navigation, search Equivalent URI DBpedia This article is a stub. You can help OpenEI by expanding it. This page represents a congressional district in Texas. US Recovery Act Smart Grid Projects in Texas's 26th congressional district Denton County Electric Cooperative d/b/a CoServ Electric Smart Grid Project Registered Energy Companies in Texas's 26th congressional district Aecom Government Services AGS American Alternative Energy Systems Caprock Roofing ENTECH Energy Financing Inc Entech Inc Entech Solar Inc formerly WorldWater Solar Technologies ExxonMobil Fluor Corp GreenHunter Energy Inc Higher Power Energy LLC InfiniRel Corporation NatEl Paquin Energy and Fuel Power Generating Inc Shermco Industries Inc Sunluz

413

Baldrige Award Recipients--Texas Nameplate Company ...  

Science Conference Proceedings (OSTI)

... Malcolm Baldrige National Quality Award 1998 Recipient Texas Nameplate Company, Inc. Founded in 1946, Texas Nameplate Company, Inc. ...

2013-09-11T23:59:59.000Z

414

Cavern Protection (Texas) | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Administration Other Agencies You are here Home Savings Cavern Protection (Texas) Cavern Protection (Texas) Eligibility Utility Fed. Government Commercial...

415

TEXAS TRANSPORTATION INSTITUTE THE TEXAS A&M UNIVERSITY SYSTEM  

E-Print Network (OSTI)

that will begin to appear in metropolitan transportation plans (MTPs) in the near future. #12;- 3 - INTRODUCTIONTEXAS TRANSPORTATION INSTITUTE THE TEXAS A&M UNIVERSITY SYSTEM COLLEGE STATION, TEXAS Sponsored by the Capital Area Council of Governments August 2006 Transportation Institute Texas School Bus Biodiesel (B20

416

Energy Efficiency / Renewable Energy Impact in the Texas Emissions Reduction Plan (TERP), Vol. II Technical Report  

E-Print Network (OSTI)

The Energy Systems Laboratory, in fulfillment of its responsibilities under Texas Health and Safety Code Ann. 388.003 (e), Vernon Supp. 2002, submits its third annual report, Energy Efficiency/Renewable Energy (EE/RE) Impact in the Texas Emissions Reduction Plan (TERP) to the Texas Commission on Environmental Quality (TCEQ). The report is organized in three volumes. Volume 1 Summary Report, provides an executive summary with key areas summarized; Volume II Technical Report, provides a detailed report of activities, methodologies and findings; Volume III Technical Appendix, contains detailed data from simulations for each of the forty-one counties included in the analysis.

Degelman, L. O.; Yazdani, B.; Fitzpatrick, T.; Verdict, M.; Liu, Z.; Muns, S.; Ahmad, M.; Turner, W. D.; Culp, C.; Haberl, J. S.; Bryant, J.; Baltazar-Cervantes, J. C.; Gilman, D.

2004-01-01T23:59:59.000Z

417

Energy Efficiency / Renewable Energy Impact in the Texas Emissions Reduction Plan (TERP), Vol. I Summary Report  

E-Print Network (OSTI)

The Energy Systems Laboratory, in fulfillment of its responsibilities under Texas Health and Safety Code Ann. 388.003 (e), Vernon Supp. 2002, submits its third annual report, Energy Efficiency/Renewable Energy (EE/RE) Impact in the Texas Emissions Reduction Plan to the Texas Commission on Environmental Quality. The report is organized in three volumes. Volume 1 Summary Report, provides an executive summary with key areas summarized; Volume II Technical Report, provides a detailed report of activities, methodologies and findings; Volume III Technical Appendix, contains detailed data from simulations for each of the forty-one counties included in the analysis.

Haberl, J. S.; Culp, C.; Yazdani, B.; Gilman, D.; Fitzpatrick, T.; Muns, S.; Verdict, M.; Ahmad, M.; Liu, Z.; Baltazar-Cervantes, J. C.; Bryant, J.; Degelman, L. O.; Turner, W. D.

2004-01-01T23:59:59.000Z

418

West Texas A&M  

NLE Websites -- All DOE Office Websites (Extended Search)

West Texas A&M ffiUNIVERSITY Division of Nursing MEMORANDUM OF UNDERSTANDING AND AFFILIATION AGREEMENT BWXT PANTEX, Amarillo, Texas and WEST TEXASA&M UNIVERSITY DEPARTMENT OF...

419

Uranium Recovery Surface Activities (Texas)  

Energy.gov (U.S. Department of Energy (DOE))

This section of the Texas Commission on Environmental Quality enforces and makes the rules and regulations for handling and recovering radioactive materials associated with in situ mining in Texas....

420

South Texas Project Dosimetry Laboratory  

Science Conference Proceedings (OSTI)

South Texas Project Dosimetry Laboratory. NVLAP Lab Code: 100519-0. Address and Contact Information: PO Box 289 ...

2013-08-23T23:59:59.000Z

Note: This page contains sample records for the topic "johnson county texas" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


421

Guide to the Texas Ports  

E-Print Network (OSTI)

. . . . . . . . ! . 0-5538-P1 Guide to the Economic Value of Texas Ports CTRCENTER FOR TRANSPORTATION RESEARCH THE UNIVERSITY OF TEXAS AT AUSTIN www.utexas.edu/research/ctr/pdf_reports/0_5538_P1.pdf #12;#12;0-5538-P1 Guide to the Economic Value of Texas Ports Peter Siegesmund, CTR Jim Kruse, TTI

Texas at Austin, University of

422

Texas.indd  

NLE Websites -- All DOE Office Websites (Extended Search)

Texas Texas www.effi cientwindows.org March 2013 1. Meet the Energy Code and Look for the ENERGY STAR ® Windows must comply with your local energy code. Windows that are ENERGY STAR qualifi ed typically meet or exceed energy code requirements. To verify if specific window energy properties comply with the local code requirements, go to Step 2. 2. Look for Effi cient Properties on the NFRC Label The National Fenestration Rating Council (NFRC) label is needed for verifi cation of energy code compliance (www.nfrc. org). The NFRC label displays whole- window energy properties and appears on all fenestration products which are part of the ENERGY STAR program.

423

Texas.indd  

NLE Websites -- All DOE Office Websites (Extended Search)

Texas Texas www.effi cientwindows.org March 2013 1. Meet the Energy Code and Look for the ENERGY STAR ® Windows must comply with your local energy code. Windows that are ENERGY STAR qualifi ed typically meet or exceed energy code requirements. To verify if specific window energy properties comply with the local code requirements, go to Step 2. 2. Look for Effi cient Properties on the NFRC Label The National Fenestration Rating Council (NFRC) label is needed for verifi cation of energy code compliance (www.nfrc. org). The NFRC label displays whole- window energy properties and appears on all fenestration products which are part of the ENERGY STAR program.

424

EA-1971: Golden Pass LNG Export and Pipeline Project, Texas and Louisiana  

Energy.gov (U.S. Department of Energy (DOE))

The Federal Energy Regulatory Commission (FERC) is preparing, with DOE as a cooperating agency, an EA to analyze the potential environmental impacts of a proposal to construct and operate natural gas liquefaction and export facilities at the existing Golden Pass liquefied natural gas terminal in Jefferson County, Texas. The proposal includes approximately 8 miles of pipeline connecting to existing pipelines in Calcasieu Parish, Louisiana, and Jefferson County.

425

TBZ-0104 In the Matter of Hansford F. Johnson | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

4 In the Matter of Hansford F. Johnson 4 In the Matter of Hansford F. Johnson TBZ-0104 In the Matter of Hansford F. Johnson This Decision will consider a Motion to Dismiss filed by B&W Pantex LLC (B&W), the Management and Operating Contractor for the Department of Energy's (DOE) Pantex Plant (Pantex), in connection with the pending Complaint of Retaliation filed by Hansford F. Johnson against B&W under the DOE's Contractor Employee Protection Program and its governing regulations set forth at 10 C.F.R. Part 708. The Office of Hearings and Appeals (OHA) assigned the hearing component of Mr. Johnson's Part 708 Complaint proceeding, Case No. TBH-0104, and B&W's Motion to Dismiss, Case No. TBZ-0104. For the reasons set forth below, I will grant B&W's Motion in part and dismiss Mr. Johnson's Complaint as to certain alleged

426

TBZ-0104 In the Matter of Hansford F. Johnson | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

TBZ-0104 In the Matter of Hansford F. Johnson TBZ-0104 In the Matter of Hansford F. Johnson TBZ-0104 In the Matter of Hansford F. Johnson This Decision will consider a Motion to Dismiss filed by B&W Pantex LLC (B&W), the Management and Operating Contractor for the Department of Energy's (DOE) Pantex Plant (Pantex), in connection with the pending Complaint of Retaliation filed by Hansford F. Johnson against B&W under the DOE's Contractor Employee Protection Program and its governing regulations set forth at 10 C.F.R. Part 708. The Office of Hearings and Appeals (OHA) assigned the hearing component of Mr. Johnson's Part 708 Complaint proceeding, Case No. TBH-0104, and B&W's Motion to Dismiss, Case No. TBZ-0104. For the reasons set forth below, I will grant B&W's Motion in part and dismiss Mr. Johnson's Complaint as to certain alleged

427

Texas Instruments Incorporated provides  

E-Print Network (OSTI)

entirely new ones. A constant thread throughout our history has been our use of progressively more complex to the revolutionary ­ to literally and repeatedly change the world. History: · Founded in 1930 as a geophysical exploration company that used seismic signalprocessing technology to search for oil · Adopted the name Texas

Mellor-Crummey, John

428

Wind powering America - Texas  

DOE Green Energy (OSTI)

This fact sheet contains a description of the wind energy resources in the state of Texas and the state's efforts to develop wind energy production, green power, and net metering programs. The fact sheet also includes a list of contacts for those interested in obtaining more information.

O'Dell, K.

2000-04-13T23:59:59.000Z

429

2008 Texas State Energy Plan | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

2008 Texas State Energy Plan 2008 Texas State Energy Plan 2008 Texas State Energy Plan. Governor's Competitiveness Council. July 2008 2008 Texas State Energy Plan More Documents &...

430

OpenEI Community - Texas  

Open Energy Info (EERE)

Legal Review Legal Review http://en.openei.org/community/blog/texas-legal-review The NREL roadmap team recently met with our legal team Brownstein Hyatt Farber and Schreck (www.bhfs.com) for a review of the Texas portion of the Geothermal Regulatory Roadmap (GRR).  BHFS provided excellent suggestions to the Section 3 flowcharts for geothermal leases on Texas state lands.  The Texas portion of the GRR now encompasses a flowchart for Texas state land leasing on Permanent School Fund Lands, Texas Parks and Wildlife Department Lands, Land Trade Lands, and Relinquishment Act Lands.  Additionally, BHFS provided many other helpful tips for clarifying other issuetexas-legal-review"

431

Tri-County Electric Cooperative - Energy Efficient Water Heater Rebate  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Tri-County Electric Cooperative - Energy Efficient Water Heater Tri-County Electric Cooperative - Energy Efficient Water Heater Rebate Program Tri-County Electric Cooperative - Energy Efficient Water Heater Rebate Program < Back Eligibility Commercial Residential Savings Category Appliances & Electronics Water Heating Program Info State Texas Program Type Utility Rebate Program Rebate Amount $75 Provider Tri-County Electric Cooperative Tri-County Electric Cooperative offers a $75 rebate on the purchase of energy-efficient electric water heaters. The rebate is valid for new or replacement units which have an Energy Factor Rating of 0.90 or higher. The minimum tank size is 40 gallons, with a minimum 4,500 watt heating element. For validation purposes, a copy of the sales or installation receipt must accompany the [http://www.tcectexas.com/Forms/water%20heater%20rebate%20form.pdf

432

Water Rights (Texas) | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Water Rights (Texas) Water Rights (Texas) Water Rights (Texas) < Back Eligibility Utility Fed. Government Commercial Investor-Owned Utility Industrial Construction Municipal/Public Utility Local Government Rural Electric Cooperative Tribal Government Savings Category Water Buying & Making Electricity Home Weatherization Program Info State Texas Program Type Environmental Regulations Provider Texas Water Development Board The Texas Commission on Environmental Quality regulates the water rights for the state of Texas. Water and state water may be appropriated, stored, or diverted in the state of Texas for beneficial uses in reasonable amounts, with certain conditions. The Commission issues permits and regulations for water rights in Texas. Included in beneficial uses are: agricultural and industrial uses;

433

Texas Uranium Exploration, Surface Mining, and Reclamation Act (Texas) |  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Uranium Exploration, Surface Mining, and Reclamation Act Uranium Exploration, Surface Mining, and Reclamation Act (Texas) Texas Uranium Exploration, Surface Mining, and Reclamation Act (Texas) < Back Eligibility Utility Fed. Government Commercial Investor-Owned Utility Industrial Construction Municipal/Public Utility Local Government Rural Electric Cooperative Tribal Government Program Info State Texas Program Type Environmental Regulations Safety and Operational Guidelines Provider Railroad Commission of Texas The Railroad Commission of Texas is the regulatory authority for uranium surface mining. Law authorizes the Commission to assure that reclamation of mining sites is possible, to protect land owners and the environment through regulation and permitting, and to ensure that mining is operated within the rules and regulations to prevent unreasonable degradation of

434

Texas Radiation Control Act (Texas) | Department of Energy  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Radiation Control Act (Texas) Radiation Control Act (Texas) Texas Radiation Control Act (Texas) < Back Eligibility Utility Commercial Agricultural Investor-Owned Utility Industrial Construction Municipal/Public Utility Local Government Rural Electric Cooperative Tribal Government Program Info State Texas Program Type Environmental Regulations Provider Texas Commission on Environmental Quality It is the policy of the state to institute and maintain a regulatory program for radiation sources that is compatible with federal standards and regulatory programs, and, to the degree possible, compatible with other states' systems. The program permits the development and use of sources of radiation for peaceful purposes consistent with public health and safety and environmental protection. This legislation contains provisions for the

435

Texas, Our Texas Introduction: Texas is one of the 50 states of the United States. As we walk across Texas, we  

E-Print Network (OSTI)

Texas, Our Texas Introduction: Texas is one of the 50 states of the United States. As we walk across Texas, we will get to know the symbols of our special state. Grade Level and Subject: First grade, 18a, 18b; Language Arts: 1a, 1b, 1c, 1d, 13b Materials: coloring pages from Texas Bob website crayons

Wilkins, Neal

436

DOE Challenge Home Case Study, Caldwell and Johnson, Exeter, RI  

Energy.gov (U.S. Department of Energy (DOE)) Indexed Site

Caldwell and Caldwell and Johnson Exeter, RI BUILDING TECHNOLOGIES OFFICE DOE Challenge Home builders are in the top 1% of builders in the country meeting the extraordinary levels of excellence and quality specifi ed by the U.S. Department of Energy. Every DOE Challenge Home starts with ENERGY STAR for Homes Version 3 for an energy-e cient home built on a solid foundation of building science research. Then, even more advanced technologies are designed in for a home that goes above and beyond current code to give you the superior quality construction, HVAC, appliances, indoor air quality, safety, durability, comfort, and solar-ready components along with ultra-low or no utility bills. This provides homeowners with a quality home that will last for generations to come.

437

ZLOT: The Z Texas Implementation Component of the Library of Texas  

E-Print Network (OSTI)

ZLOT: The Z Texas Implementation Component of the Library of Texas William E. Moen, Principal Investigator Texas Session, Texas Library Association Dallas, TX -- April 25, 2002 1 ZLOT The Z Texas Implementation Component of the Library of Texas William E. Moen

Moen, William E.

438

Angelina County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

2704698°, -94.645035° 2704698°, -94.645035° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":31.2704698,"lon":-94.645035,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

439

Colorado County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

8648°, -96.4929797° 8648°, -96.4929797° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":29.5378648,"lon":-96.4929797,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

440

Navarro County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

991878°, -96.4929797° 991878°, -96.4929797° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":32.0991878,"lon":-96.4929797,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

Note: This page contains sample records for the topic "johnson county texas" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


441

Stephens County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

3°, -98.7481167° 3°, -98.7481167° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":32.6833723,"lon":-98.7481167,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

442

Camp County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

9567043°, -94.9974461° 9567043°, -94.9974461° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":32.9567043,"lon":-94.9974461,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

443

Caldwell County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

8°, -97.654811° 8°, -97.654811° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":29.7986218,"lon":-97.654811,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

444

Madison County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

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445

Williamson County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

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446

Gray County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

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447

Polk County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

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448

Mitchell County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

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449

Hall County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

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450

Hunt County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

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451

Archer County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

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452

Grayson County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

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453

Jackson County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

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454

Carson County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

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455

Texas County, Missouri: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

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456

Sherman County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

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457

Aransas County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

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458

Lamar County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

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459

Texas County, Oklahoma: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

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460

Wichita County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

1°, -98.7481167° 1°, -98.7481167° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":33.9309651,"lon":-98.7481167,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

Note: This page contains sample records for the topic "johnson county texas" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


461

Blanco County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

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462

Brooks County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

057°, -98.2212979° 057°, -98.2212979° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":27.0273057,"lon":-98.2212979,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

463

Oldham County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

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464

Baylor County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

5373926°, -99.2785583° 5373926°, -99.2785583° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":33.5373926,"lon":-99.2785583,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

465

Fisher County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

3°, -100.3497895° 3°, -100.3497895° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":32.7398733,"lon":-100.3497895,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

466

Bailey County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

4.0913057°, -102.8975098° 4.0913057°, -102.8975098° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":34.0913057,"lon":-102.8975098,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

467

Lynn County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

°, -101.7979613° °, -101.7979613° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":33.1446401,"lon":-101.7979613,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

468

Morris County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

847°, -94.7691586° 847°, -94.7691586° Loading map... {"minzoom":false,"mappingservice":"googlemaps3","type":"ROADMAP","zoom":14,"types":["ROADMAP","SATELLITE","HYBRID","TERRAIN"],"geoservice":"google","maxzoom":false,"width":"600px","height":"350px","centre":false,"title":"","label":"","icon":"","visitedicon":"","lines":[],"polygons":[],"circles":[],"rectangles":[],"copycoords":false,"static":false,"wmsoverlay":"","layers":[],"controls":["pan","zoom","type","scale","streetview"],"zoomstyle":"DEFAULT","typestyle":"DEFAULT","autoinfowindows":false,"kml":[],"gkml":[],"fusiontables":[],"resizable":false,"tilt":0,"kmlrezoom":false,"poi":true,"imageoverlays":[],"markercluster":false,"searchmarkers":"","locations":[{"text":"","title":"","link":null,"lat":33.122847,"lon":-94.7691586,"alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":""}]}

469

Young County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

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470

Wood County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

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471

Atascosa County, Texas: Energy Resources | Open Energy Information  

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472

Leon County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

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473

Bastrop County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

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474

Washington County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

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475

Menard County, Texas: Energy Resources | Open Energy Information  

Open Energy Info (EERE)

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