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Sample records for wake county north

  1. Wake County, North Carolina: Energy Resources | Open Energy Informatio...

    Open Energy Info (EERE)

    Solutions Formerly LED Lighting Fixtures LLF Eaton Powerware INI Power Systems Methane Power Inc Microcell Corp North Carolina State Energy Office North Carolina State...

  2. Barnes County, North Dakota: Energy Resources | Open Energy Informatio...

    Open Energy Info (EERE)

    County, North Dakota Dazey, North Dakota Fingal, North Dakota Kathryn, North Dakota Leal, North Dakota Litchville, North Dakota Nome, North Dakota Oriska, North Dakota...

  3. Bowman County, North Dakota: Energy Resources | Open Energy Informatio...

    Open Energy Info (EERE)

    A. Places in Bowman County, North Dakota Bowman, North Dakota Gascoyne, North Dakota Hart, North Dakota Rhame, North Dakota Scranton, North Dakota West Bowman, North Dakota...

  4. Pembina County, North Dakota: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    in Pembina County, North Dakota Bathgate, North Dakota Canton City, North Dakota Cavalier, North Dakota Crystal, North Dakota Drayton, North Dakota Hamilton, North Dakota...

  5. Wayne County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Places in Wayne County, North Carolina Brogden, North Carolina Elroy, North Carolina Eureka, North Carolina Fremont, North Carolina Goldsboro, North Carolina Mar-Mac, North...

  6. Dickey County, North Dakota: Energy Resources | Open Energy Informatio...

    Open Energy Info (EERE)

    Climate Zone Subtype A. Places in Dickey County, North Dakota Ellendale, North Dakota Forbes, North Dakota Fullerton, North Dakota Ludden, North Dakota Monango, North Dakota...

  7. Iredell County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    in Iredell County, North Carolina Davidson, North Carolina Harmony, North Carolina Love Valley, North Carolina Mooresville, North Carolina Statesville, North Carolina Stony...

  8. Steele County, North Dakota: Energy Resources | Open Energy Informatio...

    Open Energy Info (EERE)

    North Dakota M Power LLC Places in Steele County, North Dakota Finley, North Dakota Hope, North Dakota Luverne, North Dakota Sharon, North Dakota Retrieved from "http:...

  9. Granville County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    in Granville County, North Carolina Butner, North Carolina Creedmoor, North Carolina Oxford, North Carolina Stem, North Carolina Stovall, North Carolina Retrieved from "http:...

  10. Sioux County, North Dakota: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Zone Number 6 Climate Zone Subtype A. Places in Sioux County, North Dakota Cannon Ball, North Dakota Fort Yates, North Dakota North Sioux, North Dakota Selfridge, North...

  11. Alleghany County, North Carolina ASHRAE 169-2006 Climate Zone...

    Open Energy Info (EERE)

    Alleghany County, North Carolina ASHRAE 169-2006 Climate Zone Jump to: navigation, search County Climate Zone Place Alleghany County, North Carolina ASHRAE Standard ASHRAE 169-2006...

  12. Alamance County, North Carolina ASHRAE 169-2006 Climate Zone...

    Open Energy Info (EERE)

    Alamance County, North Carolina ASHRAE 169-2006 Climate Zone Jump to: navigation, search County Climate Zone Place Alamance County, North Carolina ASHRAE Standard ASHRAE 169-2006...

  13. Alexander County, North Carolina ASHRAE 169-2006 Climate Zone...

    Open Energy Info (EERE)

    Alexander County, North Carolina ASHRAE 169-2006 Climate Zone Jump to: navigation, search County Climate Zone Place Alexander County, North Carolina ASHRAE Standard ASHRAE 169-2006...

  14. Chatham County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Energy Companies in Chatham County, North Carolina CPS Biofuels INI Power Systems Methane Power Inc Piedmont Biofuels Places in Chatham County, North Carolina Cary, North...

  15. Surry County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    4 Climate Zone Subtype A. Registered Energy Companies in Surry County, North Carolina Pike Electric Corporation Places in Surry County, North Carolina Dobson, North Carolina...

  16. Cabarrus County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Subtype A. Energy Generation Facilities in Cabarrus County, North Carolina Charlotte Motor Speedway Biomass Facility Places in Cabarrus County, North Carolina Concord, North...

  17. Pender County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Climate Zone Number 3 Climate Zone Subtype A. Places in Pender County, North Carolina Atkinson, North Carolina Burgaw, North Carolina St. Helena, North Carolina Surf City, North...

  18. Hettinger County, North Dakota: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    in Hettinger County, North Dakota Central Hettinger, North Dakota Mott, North Dakota New England, North Dakota Regent, North Dakota Retrieved from "http:en.openei.orgw...

  19. Dunn County, North Dakota: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    A. Places in Dunn County, North Dakota Dodge, North Dakota Dunn Center, North Dakota Halliday, North Dakota Killdeer, North Dakota Retrieved from "http:en.openei.orgw...

  20. Ransom County, North Dakota: Energy Resources | Open Energy Informatio...

    Open Energy Info (EERE)

    North Dakota Enderlin, North Dakota Fort Ransom, North Dakota Lisbon, North Dakota Sheldon, North Dakota Retrieved from "http:en.openei.orgwindex.php?titleRansomCounty,N...

  1. Stokes County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Climate Zone Subtype A. Places in Stokes County, North Carolina Danbury, North Carolina King, North Carolina Tobaccoville, North Carolina Walnut Cove, North Carolina Retrieved from...

  2. Columbus County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Zone Number 3 Climate Zone Subtype A. Places in Columbus County, North Carolina Boardman, North Carolina Bolton, North Carolina Brunswick, North Carolina Cerro Gordo, North...

  3. Kidder County, North Dakota: Energy Resources | Open Energy Informatio...

    Open Energy Info (EERE)

    Climate Zone Number 7 Climate Zone Subtype A. Places in Kidder County, North Dakota Dawson, North Dakota Kickapoo, North Dakota Pettibone, North Dakota Robinson, North Dakota...

  4. Transylvania County, North Carolina: Energy Resources | Open...

    Open Energy Info (EERE)

    Transylvania County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.2190534, -82.7778579 Show Map Loading map......

  5. Stark County, North Dakota: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Dakota Gladstone, North Dakota Richardton, North Dakota South Heart, North Dakota Taylor, North Dakota Retrieved from "http:en.openei.orgwindex.php?titleStarkCounty,Nor...

  6. McDowell County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Zone Number 4 Climate Zone Subtype A. Places in McDowell County, North Carolina Marion, North Carolina Old Fort, North Carolina West Marion, North Carolina Retrieved from...

  7. Washington County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Zone Number 3 Climate Zone Subtype A. Places in Washington County, North Carolina Creswell, North Carolina Plymouth, North Carolina Roper, North Carolina Retrieved from "http:...

  8. Davie County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Zone Number 4 Climate Zone Subtype A. Places in Davie County, North Carolina Bermuda Run, North Carolina Cooleemee, North Carolina Mocksville, North Carolina Retrieved from...

  9. New Hanover County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    A. Registered Energy Companies in New Hanover County, North Carolina Chemtex GE Hitachi Nuclear Energy Energy Generation Facilities in New Hanover County, North Carolina New...

  10. EIS-0469: Wilton IV Wind Energy Center; Burleigh County, North...

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    9: Wilton IV Wind Energy Center; Burleigh County, North Dakota EIS-0469: Wilton IV Wind Energy Center; Burleigh County, North Dakota Summary Western Area Power Administration is...

  11. Caswell County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Climate Zone Number 4 Climate Zone Subtype A. Places in Caswell County, North Carolina Milton, North Carolina Yanceyville, North Carolina Retrieved from "http:en.openei.orgw...

  12. Alternative Fuels Data Center: North Carolina's Henderson County Focuses on

    Alternative Fuels and Advanced Vehicles Data Center [Office of Energy Efficiency and Renewable Energy (EERE)]

    Natural Gas North Carolina's Henderson County Focuses on Natural Gas to someone by E-mail Share Alternative Fuels Data Center: North Carolina's Henderson County Focuses on Natural Gas on Facebook Tweet about Alternative Fuels Data Center: North Carolina's Henderson County Focuses on Natural Gas on Twitter Bookmark Alternative Fuels Data Center: North Carolina's Henderson County Focuses on Natural Gas on Google Bookmark Alternative Fuels Data Center: North Carolina's Henderson County Focuses

  13. McHenry County, North Dakota: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    McHenry, North Dakota Towner, North Dakota Upham, North Dakota Velva, North Dakota Voltaire, North Dakota Retrieved from "http:en.openei.orgwindex.php?titleMcHenryCounty,...

  14. North County Regional Resource Biomass Facility | Open Energy...

    Open Energy Info (EERE)

    Facility Facility North County Regional Resource Sector Biomass Facility Type Municipal Solid Waste Location Palm Beach County, Florida Coordinates 26.6514503, -80.2767327 Show...

  15. Alleghany County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Zone Number 5 Climate Zone Subtype A. Places in Alleghany County, North Carolina Sparta, North Carolina Retrieved from "http:en.openei.orgwindex.php?titleAlleghanyCount...

  16. Pasquotank County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Zone Number 3 Climate Zone Subtype A. Places in Pasquotank County, North Carolina Elizabeth City, North Carolina Retrieved from "http:en.openei.orgwindex.php?titlePasquota...

  17. Logan County, North Dakota: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Hide Map This article is a stub. You can help OpenEI by expanding it. Logan County is a county in North Dakota. Its FIPS County Code is 047. It is classified as...

  18. Pierce County, North Dakota: Energy Resources | Open Energy Informatio...

    Open Energy Info (EERE)

    Hide Map This article is a stub. You can help OpenEI by expanding it. Pierce County is a county in North Dakota. Its FIPS County Code is 069. It is classified as...

  19. Williams County, North Dakota: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Hide Map This article is a stub. You can help OpenEI by expanding it. Williams County is a county in North Dakota. Its FIPS County Code is 105. It is classified as...

  20. Nelson County, North Dakota: Energy Resources | Open Energy Informatio...

    Open Energy Info (EERE)

    Hide Map This article is a stub. You can help OpenEI by expanding it. Nelson County is a county in North Dakota. Its FIPS County Code is 063. It is classified as...

  1. Beaufort County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    article is a stub. You can help OpenEI by expanding it. Beaufort County is a county in North Carolina. Its FIPS County Code is 013. It is classified as ASHRAE 169-2006 Climate...

  2. Avery County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    This article is a stub. You can help OpenEI by expanding it. Avery County is a county in North Carolina. Its FIPS County Code is 011. It is classified as ASHRAE 169-2006 Climate...

  3. Bertie County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    This article is a stub. You can help OpenEI by expanding it. Bertie County is a county in North Carolina. Its FIPS County Code is 015. It is classified as ASHRAE 169-2006 Climate...

  4. Jackson County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Hide Map This article is a stub. You can help OpenEI by expanding it. Jackson County is a county in North Carolina. Its FIPS County Code is 099. It is classified...

  5. Adams County, North Dakota: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Hide Map This article is a stub. You can help OpenEI by expanding it. Adams County is a county in North Dakota. Its FIPS County Code is 001. It is classified as...

  6. Montgomery County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Hide Map This article is a stub. You can help OpenEI by expanding it. Montgomery County is a county in North Carolina. Its FIPS County Code is 123. It is classified...

  7. Traill County, North Dakota: Energy Resources | Open Energy Informatio...

    Open Energy Info (EERE)

    Dakota. Its FIPS County Code is 097. It is classified as ASHRAE 169-2006 Climate Zone Number 7 Climate Zone Subtype A. Places in Traill County, North Dakota Buxton, North...

  8. Grand Forks County, North Dakota: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Dakota. Its FIPS County Code is 035. It is classified as ASHRAE 169-2006 Climate Zone Number 7 Climate Zone Subtype A. Registered Energy Companies in Grand Forks County, North...

  9. Guilford County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Guilford County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 36.0899873, -79.8296743 Show Map Loading map......

  10. Ramsey County, North Dakota: Energy Resources | Open Energy Informatio...

    Open Energy Info (EERE)

    Ramsey County, North Dakota: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 48.3076017, -98.7287191 Show Map Loading map......

  11. Person County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Person County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 36.3528221, -78.9288242 Show Map Loading map......

  12. Ward County, North Dakota: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Ward County, North Dakota: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 48.2147451, -101.5805256 Show Map Loading map......

  13. Tyrrell County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Tyrrell County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.8925537, -76.1783739 Show Map Loading map......

  14. Swain County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Swain County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.4328955, -83.4643551 Show Map Loading map......

  15. Vance County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Vance County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 36.3479057, -78.4297187 Show Map Loading map......

  16. Rutherford County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Rutherford County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.4258737, -81.909826 Show Map Loading map......

  17. Davidson County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Davidson County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.7748479, -80.1875065 Show Map Loading map......

  18. Lenoir County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Lenoir County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.2326725, -77.6077865 Show Map Loading map......

  19. Gates County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Gates County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 36.4202077, -76.6874701 Show Map Loading map......

  20. Gaston County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Gaston County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.2895651, -81.2078164 Show Map Loading map......

  1. Dare County, North Carolina: Energy Resources | Open Energy Informatio...

    Open Energy Info (EERE)

    Dare County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.6549619, -75.6208088 Show Map Loading map......

  2. Johnston County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Johnston County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.4403514, -78.3842227 Show Map Loading map......

  3. Edgecombe County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Edgecombe County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.8840053, -77.6536125 Show Map Loading map......

  4. Perquimans County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Perquimans County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 36.1329763, -76.4100267 Show Map Loading map......

  5. Yadkin County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Yadkin County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 36.2023597, -80.6770787 Show Map Loading map......

  6. Halifax County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Halifax County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 36.2646764, -77.6077865 Show Map Loading map......

  7. Catawba County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Catawba County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.6840748, -81.2518833 Show Map Loading map......

  8. Onslow County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Onslow County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 34.6540094, -77.4701972 Show Map Loading map......

  9. Currituck County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Currituck County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 36.4189826, -75.946324 Show Map Loading map......

  10. Buncombe County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Buncombe County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.5931377, -82.4752757 Show Map Loading map......

  11. Chowan County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Chowan County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 36.1354131, -76.6181655 Show Map Loading map......

  12. Hertford County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Hertford County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 36.3761772, -77.0564464 Show Map Loading map......

  13. Pamlico County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Pamlico County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.1337865, -76.6874701 Show Map Loading map......

  14. Watauga County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Watauga County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 36.1941825, -81.734942 Show Map Loading map......

  15. Wilkes County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Wilkes County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 36.202858, -81.2518833 Show Map Loading map......

  16. Anson County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Anson County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 34.9054732, -80.1875065 Show Map Loading map......

  17. Ashe County, North Carolina: Energy Resources | Open Energy Informatio...

    Open Energy Info (EERE)

    Ashe County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 36.4339674, -81.4718387 Show Map Loading map......

  18. Yancey County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Yancey County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.888897, -82.345189 Show Map Loading map......

  19. Harnett County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Harnett County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.3578648, -78.8835548 Show Map Loading map......

  20. Billings County, North Dakota: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Billings County, North Dakota: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 47.0560305, -103.3906121 Show Map Loading map......

  1. Moore County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Moore County, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.3674493, -79.4703885 Show Map Loading map......

  2. Camden County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Climate Zone Number 3 Climate Zone Subtype A. Places in Camden County, North Carolina Elizabeth City, North Carolina Retrieved from "http:en.openei.orgwindex.php?titleCamdenC...

  3. Wake Forest, North Carolina: Energy Resources | Open Energy Informatio...

    Open Energy Info (EERE)

    Forest, North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.9798734, -78.5097228 Show Map Loading map... "minzoom":false,"mappin...

  4. Anson County, North Carolina ASHRAE 169-2006 Climate Zone | Open...

    Open Energy Info (EERE)

    Anson County, North Carolina ASHRAE 169-2006 Climate Zone Jump to: navigation, search County Climate Zone Place Anson County, North Carolina ASHRAE Standard ASHRAE 169-2006 Climate...

  5. Ashe County, North Carolina ASHRAE 169-2006 Climate Zone | Open...

    Open Energy Info (EERE)

    Ashe County, North Carolina ASHRAE 169-2006 Climate Zone Jump to: navigation, search County Climate Zone Place Ashe County, North Carolina ASHRAE Standard ASHRAE 169-2006 Climate...

  6. Adams County, North Dakota ASHRAE 169-2006 Climate Zone | Open...

    Open Energy Info (EERE)

    Adams County, North Dakota ASHRAE 169-2006 Climate Zone Jump to: navigation, search County Climate Zone Place Adams County, North Dakota ASHRAE Standard ASHRAE 169-2006 Climate...

  7. EIS-0072: Great Plains Gasification Project, Mercer County, North Dakota

    Broader source: Energy.gov [DOE]

    The Office of Fossil Energy prepared this EIS to evaluate the impacts of a project to construct a 125 million cubic feet per day coal gasification facility located in Mercer County, North Dakota. The Office of Fossil Energy adopted three environmental impact evaluation documents prepared by other Federal agencies to develop this EIS.

  8. Cass County, North Dakota: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    North Dakota North River, North Dakota Oxbow, North Dakota Page, North Dakota Prairie Rose, North Dakota Reile's Acres, North Dakota Tower City, North Dakota West Fargo, North...

  9. Robeson County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    North Carolina Prospect, North Carolina Raemon, North Carolina Raynham, North Carolina Red Springs, North Carolina Rennert, North Carolina Rex, North Carolina Rowland, North...

  10. Cavalier County, North Dakota: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Calvin, North Dakota Hannah, North Dakota Langdon, North Dakota Loma, North Dakota Milton, North Dakota Munich, North Dakota Nekoma, North Dakota Osnabrock, North Dakota...

  11. Rolette County, North Dakota: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    North Dakota North Rolette, North Dakota Rolette, North Dakota Rolla, North Dakota Shell Valley, North Dakota South Rolette, North Dakota St. John, North Dakota Turtle...

  12. Northampton County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    North Carolina Conway, North Carolina Garysburg, North Carolina Gaston, North Carolina Jackson, North Carolina Lasker, North Carolina Rich Square, North Carolina Seaboard, North...

  13. Mountrail County, North Dakota: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    North Dakota New Town, North Dakota Palermo, North Dakota Parshall, North Dakota Plaza, North Dakota Ross, North Dakota Southwest Mountrail, North Dakota Stanley, North...

  14. Burleigh County, North Dakota: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    North Dakota Lincoln, North Dakota Lincoln-Fort Rice, North Dakota Lyman, North Dakota Phoenix, North Dakota Regan, North Dakota Wilton, North Dakota Wing, North Dakota Retrieved...

  15. Alamance County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Burlington, North Carolina Elon, North Carolina Gibsonville, North Carolina Glen Raven, North Carolina Graham, North Carolina Green Level, North Carolina Haw River, North...

  16. Bladen County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Dublin, North Carolina East Arcadia, North Carolina Elizabethtown, North Carolina Kelly, North Carolina Tar Heel, North Carolina White Lake, North Carolina White Oak, North...

  17. Duplin County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Kenansville, North Carolina Magnolia, North Carolina Mount Olive, North Carolina Rose Hill, North Carolina Teachey, North Carolina Wallace, North Carolina Warsaw, North...

  18. Wells County, North Dakota: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    North Dakota Cathay, North Dakota Fessenden, North Dakota Hamberg, North Dakota Harvey, North Dakota Hurdsfield, North Dakota Sykeston, North Dakota Retrieved from "http:...

  19. Forsyth County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Carolina King, North Carolina Lewisville, North Carolina Midway, North Carolina Rural Hall, North Carolina Tobaccoville, North Carolina Walkertown, North Carolina Winston-Salem,...

  20. Richmond County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    East Rockingham, North Carolina Ellerbe, North Carolina Hamlet, North Carolina Hoffman, North Carolina Norman, North Carolina Rockingham, North Carolina Retrieved from...

  1. Brunswick County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Island, North Carolina Belville, North Carolina Boiling Spring Lakes, North Carolina Bolivia, North Carolina Calabash, North Carolina Carolina Shores, North Carolina Caswell...

  2. Hoke County, North Carolina: Energy Resources | Open Energy Informatio...

    Open Energy Info (EERE)

    Carolina Dundarrach, North Carolina Five Points, North Carolina Raeford, North Carolina Red Springs, North Carolina Rockfish, North Carolina Silver City, North Carolina Retrieved...

  3. Nash County, North Carolina: Energy Resources | Open Energy Informatio...

    Open Energy Info (EERE)

    Carolina Middlesex, North Carolina Momeyer, North Carolina Nashville, North Carolina Red Oak, North Carolina Rocky Mount, North Carolina Sharpsburg, North Carolina Spring Hope,...

  4. Stanly County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Carolina New London, North Carolina Norwood, North Carolina Oakboro, North Carolina Red Cross, North Carolina Richfield, North Carolina Stanfield, North Carolina Retrieved...

  5. LaMoure County, North Dakota: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Edgeley, North Dakota Jud, North Dakota Kulm, North Dakota LaMoure, North Dakota Marion, North Dakota Verona, North Dakota Retrieved from "http:en.openei.orgw...

  6. Cumberland County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Carolina Fayetteville, North Carolina Fort Bragg, North Carolina Godwin, North Carolina Hope Mills, North Carolina Linden, North Carolina Pope AFB, North Carolina Spring Lake,...

  7. Carteret County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Bogue, North Carolina Cape Carteret, North Carolina Cedar Point, North Carolina Emerald Isle, North Carolina Harkers Island, North Carolina Indian Beach, North Carolina...

  8. Henderson County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    East Flat Rock, North Carolina Etowah, North Carolina Flat Rock, North Carolina Fletcher, North Carolina Hendersonville, North Carolina Laurel Park, North Carolina Mills...

  9. Craven County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Dover, North Carolina Fairfield Harbour, North Carolina Havelock, North Carolina James City, North Carolina Neuse Forest, North Carolina New Bern, North Carolina River Bend,...

  10. Pitt County, North Carolina: Energy Resources | Open Energy Informatio...

    Open Energy Info (EERE)

    Carolina Greenville, North Carolina Grifton, North Carolina Grimesland, North Carolina Simpson, North Carolina Winterville, North Carolina Retrieved from "http:en.openei.orgw...

  11. Sampson County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Roseboro, North Carolina Salemburg, North Carolina Spiveys Corner, North Carolina Turkey, North Carolina Vann Crossroads, North Carolina Retrieved from "http:en.openei.org...

  12. Henderson County North Middle School wins 2015 DOE West Kentucky Regional Science Bowl

    Broader source: Energy.gov [DOE]

    PADUCAH, Ky. – Henderson County North Middle School won the U.S. Department of Energy’s West Kentucky Regional Science Bowl February 6, 2015 during competition among 12 middle school teams. The...

  13. Alexander County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.9217986, -81.1764719 Show Map Loading map... "minzoom":false,"mappingservice...

  14. Graham County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.3634623, -83.804868 Show Map Loading map... "minzoom":false,"mappingservice"...

  15. Cleveland County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.361354, -81.6035062 Show Map Loading map... "minzoom":false,"mappingservice"...

  16. Franklin County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 36.0730279, -78.2476146 Show Map Loading map... "minzoom":false,"mappingservice...

  17. Randolph County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.7449531, -79.8296743 Show Map Loading map... "minzoom":false,"mappingservice...

  18. Jones County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.0306293, -77.3324425 Show Map Loading map... "minzoom":false,"mappingservice...

  19. Union County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 34.9338651, -80.543845 Show Map Loading map... "minzoom":false,"mappingservice"...

  20. Rockingham County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 36.4335041, -79.8296743 Show Map Loading map... "minzoom":false,"mappingservice...

  1. Haywood County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.624394, -82.9931607 Show Map Loading map... "minzoom":false,"mappingservice"...

  2. Hyde County, North Carolina: Energy Resources | Open Energy Informatio...

    Open Energy Info (EERE)

    North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.3777712, -76.1783739 Show Map Loading map... "minzoom":false,"mappingservice...

  3. Warren County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 36.4352131, -78.0195387 Show Map Loading map... "minzoom":false,"mappingservice...

  4. Burke County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.7616931, -81.734942 Show Map Loading map... "minzoom":false,"mappingservice"...

  5. Lincoln County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.4637028, -81.2078164 Show Map Loading map... "minzoom":false,"mappingservice...

  6. Wilson County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.6925497, -77.8824596 Show Map Loading map... "minzoom":false,"mappingservice...

  7. Polk County, North Carolina: Energy Resources | Open Energy Informatio...

    Open Energy Info (EERE)

    North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.2686842, -82.1713632 Show Map Loading map... "minzoom":false,"mappingservice...

  8. Lee County, North Carolina: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.4693744, -79.1548533 Show Map Loading map... "minzoom":false,"mappingservice...

  9. Caldwell County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.9227448, -81.5596427 Show Map Loading map... "minzoom":false,"mappingservice...

  10. Rowan County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.6303455, -80.543845 Show Map Loading map... "minzoom":false,"mappingservice"...

  11. Scotland County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 34.8451203, -79.4703885 Show Map Loading map... "minzoom":false,"mappingservice...

  12. Mitchell County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 36.0277763, -82.1496049 Show Map Loading map... "minzoom":false,"mappingservice...

  13. Orange County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Advanced Lead Acid Battery Consortium Carolina Solar Energy CSE Cree Inc Practical Eco Semprius University of North Carolina Registered Financial Organizations in Orange...

  14. Clay County, North Carolina: Energy Resources | Open Energy Informatio...

    Open Energy Info (EERE)

    North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.0964003, -83.7199136 Show Map Loading map... "minzoom":false,"mappingservice...

  15. Macon County, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    North Carolina: Energy Resources Jump to: navigation, search Equivalent URI DBpedia Coordinates 35.1197519, -83.336188 Show Map Loading map... "minzoom":false,"mappingservice"...

  16. EA-1948: Gila-North Gila Transmission Line Rebuild and Upgrade Project, Yuma County, Arizona

    Broader source: Energy.gov [DOE]

    DOE’s Western Area Power Administration (Western) prepared this EA to analyze the potential environmental impacts of a proposal to rebuild and upgrade two parallel 4.8-mile transmission lines between the Gila and North Gila Substations and take actions in support of portions of Arizona Public Service’s construction of a new, 12.8 mile 230-kV transmission line between North Gila and a proposed substation in Yuma County, Arizona. The U.S. Bureau of Reclamation and U.S. Army Corps of Engineers are cooperating agencies.

  17. Mineral resources of the North Algodones Dunes Wilderness Study Area (CDCA-360), Imperial County, California

    SciTech Connect (OSTI)

    Smith, R.S.U.; Yeend, W.; Dohrenwend, J.C.; Gese, D.D.

    1984-01-01

    This report presents the results of a mineral survey of the North Algodones Dunes Wilderness Study Area (CDCA-360), California Desert Conservation Area, Imperial County, California. The potential for undiscovered base and precious metals, and sand and gravel within the North Algodones Dunes Wilderness Study Area is low. The study area has a moderate potential for geothermal energy. One small sand-free area between the Coachella Canal and the west edge of the dune field would probably be the only feasible exploration site for geothermal energy. The study area has a moderate to high potential for the occurrence of undiscovered gas/condensate within the underlying rocks. 21 refs.

  18. McLean County, North Dakota: Energy Resources | Open Energy Informatio...

    Open Energy Info (EERE)

    Dakota Mercer, North Dakota North Central McLean, North Dakota Riverdale, North Dakota Ruso, North Dakota South McLean, North Dakota Turtle Lake, North Dakota Underwood, North...

  19. wake data

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    wake data - Sandia Energy Energy Search Icon Sandia Home Locations Contact Us Employee Locator Energy & Climate Secure & Sustainable Energy Future Stationary Power Energy Conversion Efficiency Solar Energy Wind Energy Water Power Supercritical CO2 Geothermal Natural Gas Safety, Security & Resilience of the Energy Infrastructure Energy Storage Nuclear Power & Engineering Grid Modernization Battery Testing Nuclear Energy Defense Waste Management Programs Advanced Nuclear Energy

  20. Coalescing Wind Turbine Wakes

    DOE Public Access Gateway for Energy & Science Beta (PAGES Beta)

    Lee, S.; Churchfield, M.; Sirnivas, S.; Moriarty, P.; Nielsen, F. G.; Skaare, B.; Byklum, E.

    2015-06-18

    A team of researchers from the National Renewable Energy Laboratory and Statoil used large-eddy simulations to numerically investigate the merging wakes from upstream offshore wind turbines. Merging wakes are typical phenomena in wind farm flows in which neighboring turbine wakes consolidate to form complex flow patterns that are as yet not well understood. In the present study, three 6-MW turbines in a row were subjected to a neutrally stable atmospheric boundary layer flow. As a result, the wake from the farthest upstream turbine conjoined the downstream wake, which significantly altered the subsequent velocity deficit structures, turbulence intensity, and the globalmore » meandering behavior. The complexity increased even more when the combined wakes from the two upstream turbines mixed with the wake generated by the last turbine, thereby forming a "triplet" structure. Although the influence of the wake generated by the first turbine decayed with downstream distance, the mutated wakes from the second turbine continued to influence the downstream wake. Two mirror-image angles of wind directions that yielded partial wakes impinging on the downstream turbines yielded asymmetric wake profiles that could be attributed to the changing flow directions in the rotor plane induced by the Coriolis force. In conclusion, the turbine wakes persisted for extended distances in the present study, which is a result of low aerodynamic surface roughness typically found in offshore conditions« less

  1. Coalescing Wind Turbine Wakes

    SciTech Connect (OSTI)

    Lee, S.; Churchfield, M.; Sirnivas, S.; Moriarty, P.; Nielsen, F. G.; Skaare, B.; Byklum, E.

    2015-06-18

    A team of researchers from the National Renewable Energy Laboratory and Statoil used large-eddy simulations to numerically investigate the merging wakes from upstream offshore wind turbines. Merging wakes are typical phenomena in wind farm flows in which neighboring turbine wakes consolidate to form complex flow patterns that are as yet not well understood. In the present study, three 6-MW turbines in a row were subjected to a neutrally stable atmospheric boundary layer flow. As a result, the wake from the farthest upstream turbine conjoined the downstream wake, which significantly altered the subsequent velocity deficit structures, turbulence intensity, and the global meandering behavior. The complexity increased even more when the combined wakes from the two upstream turbines mixed with the wake generated by the last turbine, thereby forming a "triplet" structure. Although the influence of the wake generated by the first turbine decayed with downstream distance, the mutated wakes from the second turbine continued to influence the downstream wake. Two mirror-image angles of wind directions that yielded partial wakes impinging on the downstream turbines yielded asymmetric wake profiles that could be attributed to the changing flow directions in the rotor plane induced by the Coriolis force. In conclusion, the turbine wakes persisted for extended distances in the present study, which is a result of low aerodynamic surface roughness typically found in offshore conditions

  2. EIS-0469: Wilton IV Wind Energy Center; Burleigh County, North Dakota

    Broader source: Energy.gov [DOE]

    Western Area Power Administration is evaluating the potential environmental impacts of interconnecting NextEra Energy Resources proposed Wilton IV Wind Energy Center Project, near Bismarck, North Dakota, to Western’s existing Wilton/Baldwin substation and allowing NextEra’s existing wind projects in this area to operate above 50 annual MW. Western is preparing a Supplemental Draft EIS to address substantial changes to the proposal, including 30 turbine locations and 5 alternate turbine locations in Crofte Township.

  3. Spectral coherence in windturbine wakes

    SciTech Connect (OSTI)

    Hojstrup, J.

    1996-12-31

    This paper describes an experiment at a Danish wind farm to investigate the lateral and vertical coherences in the nonequilibrium turbulence of a wind turbine wake. Two meteorological masts were instrumented for measuring profiles of mean speed, turbulence, and temperature. Results are provided graphically for turbulence intensities, velocity spectra, lateral coherence, and vertical coherence. The turbulence was somewhat influenced by the wake, or possibly from aggregated wakes further upstream, even at 14.5 diameters. Lateral coherence (separation 5m) seemed to be unaffected by the wake at 7.5 diameters, but the flow was less coherent in the near wake. The wake appeared to have little influence on vertical coherence (separation 13m). Simple, conventional models for coherence appeared to be adequate descriptions for wake turbulence except for the near wake situation. 3 refs., 7 figs., 1 tab.

  4. Duval County, Florida: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Grid Project Registered Networking Organizations in Duval County, Florida North Florida Global Warming Study Group Registered Energy Companies in Duval County, Florida American...

  5. SNL Wake Imaging System Solves Wind Turbine Wake Formation Mysteries |

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    Department of Energy SNL Wake Imaging System Solves Wind Turbine Wake Formation Mysteries SNL Wake Imaging System Solves Wind Turbine Wake Formation Mysteries May 18, 2015 - 4:20pm Addthis Illustration showing a utility-scale wind turbine in a field. A square brown steel shed behind the base of the turbine's tower houses the laser that emits a laser light sheet (illustrated by a green triangle) that travels from the shed to above the turbine downwind of the turbine. A white van parked

  6. North Carolina/Incentives | Open Energy Information

    Open Energy Info (EERE)

    for North Carolina CSV (rows 1 - 24) Incentive Incentive Type Active Ashe County - Wind Energy System Ordinance (North Carolina) SolarWind Permitting Standards Yes Building...

  7. Sandia Wake-Imaging System

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Nuclear Power & Engineering Grid Modernization Battery Testing Nuclear Fuel Cycle Defense Waste Management Programs ... Sandia Wake-Imaging System HomeTag:Sandia ...

  8. Wind farm array wake losses

    SciTech Connect (OSTI)

    Baker, R.W.; McCarthy, E.F.

    1997-12-31

    A wind turbine wake study was conducted in the summer of 1987 at an Altamont Pass wind electric generating facility. The wind speed deficits, turbulence, and power deficits from an array consisting of several rows of wind turbines is discussed. A total of nine different test configurations were evaluated for a downwind spacing ranging from 7 rotor diameters (RD) to 34 RD and a cross wind spacing of 1.3 RD and 2.7 RD. Wake power deficits of 15% were measured at 16 RD and power losses of a few percent were even measurable at 27 RD for the closer cross wind spacing. For several rows of turbines separated by 7-9 RD the wake zones overlapped and formed compound wakes with higher velocity deficits. The wind speed and direction turbulence in the wake was much higher than the ambient turbulence. The results from this study are compared to the findings from other similar field measurements.

  9. Hyde County- Wind Energy Facility Ordinance

    Broader source: Energy.gov [DOE]

    Hyde County, located in eastern North Carolina, adopted a wind ordinance in 2008 to regulate the use of wind energy facilities throughout the county, including waters within the boundaries of Hyde...

  10. Tyrrell County- Wind Energy Facility Ordinance

    Broader source: Energy.gov [DOE]

    Tyrrell County, located in northeastern North Carolina, adopted a wind ordinance in 2009 to regulate the use of wind energy facilities in the unincorporated areas of the county. The ordinance is...

  11. Enhanced oil recovery by CO/sub 2/ miscible displacement in the Little Knife Field, Billings County, North Dakota

    SciTech Connect (OSTI)

    Desch, J.B.; Larsen, W.K.; Lindsay, R.F.; Nettle, R.L.

    1982-01-01

    A CO/sub 2/ minitest employing the miscible displacement process was conducted in the Mission Canyon Formation (lower Mississippian) at Little Knife Field, North Dakota. The Mission Canyon is a dolomitized carbonate reservoir which is undergoing primary depletion. Four wells were drilled in an inverted four-spot configuration, covering five acres. The central well served as the injection well and was surrounded by three non-producing observation wells. A WAG-type injection sequence utilized five alternate slugs of formation water and CO/sub 2/. Preflush injection began December 11, 1980, followed by the WAG slugs from January 7 to March 25, 1981. Drive water injection commenced immediately and was completed on September 24, 1981. Injection rates were maintained at 1150 B/D during water injection and 40 T/D during CO/sub 2/ injection. Tracers were used during the waterflood preflush and with the water during the WAG. A pressure core behind the flood front was obtained to confirm residual-oil saturations in the project interval. Overall rock recovery was excellent, 90%, but sample recovery under reservoir pressure was less than anticipated. Invasion of drilling fluids during coring was checked by introduction of a radioactive tracer into the coring fluid. Project analysis is still ongoing and once completed, the simulation models will be updated and used to predict field-wide applicability. (JMT)

  12. Little Knife Field CO/sub 2/ minitest, Billings County, North Dakota. Final report. Volume 1. Technical report

    SciTech Connect (OSTI)

    Upton, J.E.

    1983-07-01

    A carbon dioxide minitest was conducted in the Mission Canyon Formation (lower Mississippian) at Little Knife Field, North Dakota. The Mission Canyon is a dolomitized carbonate reservoir which is undergoing primary depletion. Four wells were drilled in an inverted four-spot configuration, covering five acres. The central well served as the injection well and was surrounded by three non-producing observation wells. Oriented cores were cut in each well for detailed reservoir characterization and laboratory testing. In addition, a well test program was conducted which involved two pulse tests and injectivity tests on the individual wells. Results from these tests were used as part of the input data for two reservoir simulation models. Various parameters in the computer models were varied to determine the most efficient injection plan for the specific reservoir characteristics. The pattern sweep efficiency for carbon dioxide approached 52 percent in the minitest area. Displacement efficiency, as indicated by simulation study, was 50 percent of the oil-in-place at the start of the project, compared with an efficiency of 37 percent for waterflood. Thirty-one hundred cubic feet of CO/sub 2/ were required per incremental barrel of displaced oil. The absence of producing wells and the fact that only one zone within the Mission Canyon Formation was flooded, favorably influenced these figures. The Little Knife CO/sub 2/ minitest confirmed, by field testing, the results of laboratory CO/sub 2/ miscible displacement tests. The minitest indicated that the CO/sub 2/ miscible displacement process has technical potential for commercialization in a dolomitized carbonate reservoir that has not been extensively waterflooded and has an indicated high remaining oil saturation. 159 figures, 46 tables.

  13. Wake Control System Based on Wake Tracking - Energy Innovation Portal

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Wind Energy Wind Energy Find More Like This Return to Search Wake Control System Based on Wake Tracking National Renewable Energy Laboratory Contact NREL About This Technology Technology Marketing Summary There is a growing interest in the design of wind plant control systems to coordinate the controls of individual turbines to achieve improvements in the overall wind plant performance, such as total power production. Currently, individual turbine controls are adjusted to improve the total

  14. West Morton, North Dakota: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    "alt":0,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":"" Hide Map West Morton is a unorganized territory in Morton County, North Dakota. It falls under North...

  15. Holden, North Dakota: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    ":"","inlineLabel":"","visitedicon":"" Hide Map Holden is a unorganized territory in Adams County, North Dakota. It falls under North Dakota's At-large congressional district....

  16. Pamela Link, McLean County Commission Chairperson, U.S. Department...

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    Workforce Development Panel, Bismarck, North Dakota, Aug. 8, 2014 Good morning ... Currently, I hold the chairperson seat for the McLean County Commission in central North ...

  17. North Reading, Massachusetts: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    ,"address":"","icon":"","group":"","inlineLabel":"","visitedicon":"" Hide Map North Reading is a town in Middlesex County, Massachusetts.1 US Recovery Act Smart Grid Projects...

  18. Edgecombe-Martin County E M C | Open Energy Information

    Open Energy Info (EERE)

    Edgecombe-Martin County E M C Jump to: navigation, search Name: Edgecombe-Martin County E M C Place: North Carolina Phone Number: (252) 823-2171 or (800) 445-6486 Website:...

  19. Kinston, North Carolina: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    is a stub. You can help OpenEI by expanding it. Kinston is a city in Lenoir County, North Carolina. It falls under North Carolina's 1st congressional district and North...

  20. Anne Arundel County, Maryland: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    LLC a groSolar company EnergyWorks North America International Masonry Institute Jay Hall & Associates, Inc. Synergics UEK Corporation Places in Anne Arundel County, Maryland...

  1. Howard County, Maryland: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Maryland Ellicott City, Maryland Jessup, Maryland North Laurel, Maryland Savage-Guilford, Maryland Retrieved from "http:en.openei.orgwindex.php?titleHowardCounty,Maryl...

  2. Buffalo County, South Dakota: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    Zone Number 6 Climate Zone Subtype A. Places in Buffalo County, South Dakota Fort Thompson, South Dakota North Buffalo, South Dakota Southeast Buffalo, South Dakota Retrieved...

  3. Lincoln County, Nebraska: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    and Commodities LLC Midwest Renewable Energy LLC Places in Lincoln County, Nebraska Brady, Nebraska Hershey, Nebraska Maxwell, Nebraska North Platte, Nebraska Sutherland,...

  4. Christian County, Kentucky: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Commonwealth AgriEnergy Places in Christian County, Kentucky Crofton, Kentucky Fort Campbell North, Kentucky Hopkinsville, Kentucky LaFayette, Kentucky Oak Grove, Kentucky...

  5. Frio County, Texas: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Subtype B. Places in Frio County, Texas Bigfoot, Texas Dilley, Texas Hilltop, Texas Moore, Texas North Pearsall, Texas Pearsall, Texas Retrieved from "http:en.openei.orgw...

  6. Geary County, Kansas: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    County, Kansas Fort Riley North, Kansas Fort Riley-Camp Whiteside, Kansas Grandview Plaza, Kansas Junction City, Kansas Milford, Kansas Retrieved from "http:en.openei.orgw...

  7. Chisago County, Minnesota: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    A. Places in Chisago County, Minnesota Center City, Minnesota Chisago City, Minnesota Harris, Minnesota Lindstrom, Minnesota North Branch, Minnesota Rush City, Minnesota Shafer,...

  8. Oconee County, Georgia: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Climate Zone Number 3 Climate Zone Subtype A. Places in Oconee County, Georgia Bishop, Georgia Bogart, Georgia North High Shoals, Georgia Watkinsville, Georgia Retrieved...

  9. EIS-0478: Antelope Valley Station to Neset Transmission Project, Mercer, Dunn, Billings, Williams, McKenzie, and Mountrail Counties, North Dakota

    Broader source: Energy.gov [DOE]

    USDA Rural Utilities Service prepared an EIS that evaluates the potential environmental impacts of constructing, operating, and maintaining a proposed transmission line and associated facilities in western North Dakota. DOE’s Western Area Power Administration, a cooperating agency, would modify its existing Williston Substation to allow a connection of the proposed new transmission line to Western’s transmission system.

  10. North Carolina Regions | U.S. DOE Office of Science (SC)

    Office of Science (SC) Website

    state, county, city, or district. For more information, please visit the Middle School Coach page. North Carolina Region Middle School Regional North Carolina Carolina Middle...

  11. North Dakota Regions | U.S. DOE Office of Science (SC)

    Office of Science (SC) Website

    for your school's state, county, city, or district. For more information, please visit the High School Coach page. New Dakota Region High School Regional North Dakota North Dakota...

  12. North Carolina Regions | U.S. DOE Office of Science (SC)

    Office of Science (SC) Website

    school's state, county, city, or district. For more information, please visit the High School Coach page. New carolina Region High School Regional North Carolina North Carolina...

  13. North Augusta, South Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    This article is a stub. You can help OpenEI by expanding it. North Augusta is a city in Aiken County and Edgefield County, South Carolina. It falls under South Carolina's 3rd...

  14. Geology of north-central Delaware basin, Eddy and Lea Counties, New Mexico: its hydrocarbon potential, focusing on 12 townships centered on WIPP site

    SciTech Connect (OSTI)

    Cheeseman, R.J.

    1986-03-01

    The Waste Isolation Pilot Plant (WIPP) site is located within the Carlsbad potash mining area, southeastern New Mexico, about 20 mi east of Carlsbad. Structurally, the WIPP site is located in the north-central part of the Delaware basin, which yields hydrocarbon production from the following: the Ordovician Ellenburger; the Pennsylvanian Morrow (gas), Atoka (oil and gas), and Strawn (reef oil) intervals; the Wolfcamp (gas) and Bone Spring (oil) formations of lowermost Permian; the Permian Yates (800-3500 ft deep), Queen, and Seven Rivers Formations; and the Delaware Mountain Group (4700-5200 ft deep). Structure contour maps demonstrate favorable Bone Spring conditions north of the WIPP site and the centrally located Delaware targets, as well as important Morrow development in the southern part. Five prospects are explored, and two are especially promising. Five anticlinal trends in this 12-township area bear field names as a result of production: Big Eddy, South Salt Lake, Cabin Lake, Los Medanos, and Sand Dunes. The Department of Energy's WIPP project is a planned repository for nuclear waste; despite centering on a deep dry hole, it occurs just northeast of productive Morrow formation. Whereas the successful tests seem concentrated on the structural highs, significant wells produce offtrend; the WIPP site lies in a syncline.

  15. North Arkansas Electric Cooperative, Inc- Residential Energy Efficiency Loan Program

    Broader source: Energy.gov [DOE]

    North Arkansas Electric Cooperative (NAEC), a Touchstone Energy Cooperative, serves approximately 35,000 member accounts in seven different counties. The coop provides low interest rates for energy...

  16. Final Environmental Impact Report: North Brawley Ten Megawatt...

    Open Energy Info (EERE)

    Impact Report: North Brawley Ten Megawatt Geothermal Demonstration Facility Abstract NA Author County of Imperial Planning Department Published WESTEC SERVICES, INC., 1979...

  17. Wheelabrator North Andover Biomass Facility | Open Energy Information

    Open Energy Info (EERE)

    Facility Facility Wheelabrator North Andover Sector Biomass Facility Type Municipal Solid Waste Location Essex County, Massachusetts Coordinates 42.7051144, -70.9071236...

  18. Ground Gravity Survey At North Brawley Geothermal Area (Department...

    Open Energy Info (EERE)

    mentioned in an environmental impact report written for the planning of the first experimental power plant at North Brawley References County of Imperial Planning Department...

  19. EIS-0221: Proposed York County Energy Partners Cogeneration Facility, York County, PA

    Broader source: Energy.gov [DOE]

    The Department of Energy prepared this environmental impact statement to assess the environmental and human health impacts associated with construction and operation of the York County Energy Partners, L.P. Cogeneration Facility on a 38- acre parcel in North Codorus Township, York County, Pennsylvania.

  20. Debris-flow benches: Dune-contact deposits record paleo-sand dune positions in north Panamint Valley, Inyo County, California

    SciTech Connect (OSTI)

    Anderson, S.P. (Univ., of California, Berkeley (USA)); Anderson, R.S. (Univ. of California, Santa Cruz (USA))

    1990-06-01

    Debris flows debouching onto the alluvial fan at the north end of Panamint Valley, California, have been episodically impounded behind sand dunes, resulting in boulder-strewn, nearly flat topped deposits in irregular basins upslope of the dune, whose upper surface is higher than the adjacent fan surface. Upslope migration of the dune field over and beyond these deposits eventually leaves them as debris-flow benches rising above the general fan surface. These features are therefore dune-contact forms, analogous to ice-contact forms such as kame terraces, in that both involve deposition against ephemeral barriers. Benches punctuate the alluvial-fan surface for 5 km downfan from the modern dune field. Clast seismic velocities of boulders on these benches indicate that bench ages increase monotonically with distance from the present dunes, implying that the dune field has migrated up the fan. Because the oldest bench is below the altitude of the highest pluvial lake shoreline in Panamint Valley (Gale Stage, ca. 50 ka) and slightly above the latest lakeshore (I Stage, ca. 14 ka), it seems likely that the dunes originated near the shore of the latest lake and have moved upfan at an average rate of 0.8 m/yr.

  1. Greensboro, North Carolina: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    This article is a stub. You can help OpenEI by expanding it. Greensboro is a city in Guilford County, North Carolina. It falls under North Carolina's 6th congressional district...

  2. West Fargo, North Dakota: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Hide Map This article is a stub. You can help OpenEI by expanding it. West Fargo is a city in Cass County, North Dakota. It falls under North Dakota's At-large...

  3. Alamo, North Dakota: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Map This article is a stub. You can help OpenEI by expanding it. Alamo is a city in Williams County, North Dakota. It falls under North Dakota's At-large congressional...

  4. Pineville, North Carolina: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    a stub. You can help OpenEI by expanding it. Pineville is a town in Mecklenburg County, North Carolina. It falls under North Carolina's 9th congressional district.12...

  5. Hope, North Dakota: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Hide Map This article is a stub. You can help OpenEI by expanding it. Hope is a city in Steele County, North Dakota. It falls under North Dakota's At-large...

  6. Southern Pines, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    article is a stub. You can help OpenEI by expanding it. Southern Pines is a town in Moore County, North Carolina. It falls under North Carolina's 6th congressional...

  7. Carthage, North Carolina: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Map This article is a stub. You can help OpenEI by expanding it. Carthage is a town in Moore County, North Carolina. It falls under North Carolina's 6th congressional...

  8. Pinebluff, North Carolina: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Map This article is a stub. You can help OpenEI by expanding it. Pinebluff is a town in Moore County, North Carolina. It falls under North Carolina's 6th congressional...

  9. Vass, North Carolina: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Hide Map This article is a stub. You can help OpenEI by expanding it. Vass is a town in Moore County, North Carolina. It falls under North Carolina's 6th congressional...

  10. Taylortown, North Carolina: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    This article is a stub. You can help OpenEI by expanding it. Taylortown is a town in Moore County, North Carolina. It falls under North Carolina's 6th congressional...

  11. Pinehurst, North Carolina: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    This article is a stub. You can help OpenEI by expanding it. Pinehurst is a village in Moore County, North Carolina. It falls under North Carolina's 6th congressional...

  12. Robbins, North Carolina: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Map This article is a stub. You can help OpenEI by expanding it. Robbins is a city in Moore County, North Carolina. It falls under North Carolina's 6th congressional...

  13. Foxfire, North Carolina: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    This article is a stub. You can help OpenEI by expanding it. Foxfire is a village in Moore County, North Carolina. It falls under North Carolina's 6th congressional...

  14. Aberdeen, North Carolina: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Map This article is a stub. You can help OpenEI by expanding it. Aberdeen is a town in Moore County, North Carolina. It falls under North Carolina's 6th congressional...

  15. Whispering Pines, North Carolina: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    is a stub. You can help OpenEI by expanding it. Whispering Pines is a village in Moore County, North Carolina. It falls under North Carolina's 6th congressional...

  16. Cameron, North Carolina: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Map This article is a stub. You can help OpenEI by expanding it. Cameron is a town in Moore County, North Carolina. It falls under North Carolina's 6th congressional...

  17. Oxford, North Carolina: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Hide Map This article is a stub. You can help OpenEI by expanding it. Oxford is a city in Granville County, North Carolina. It falls under North Carolina's 1st...

  18. Bucyrus, North Dakota: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Map This article is a stub. You can help OpenEI by expanding it. Bucyrus is a city in Adams County, North Dakota. It falls under North Dakota's At-large congressional...

  19. Hettinger, North Dakota: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Map This article is a stub. You can help OpenEI by expanding it. Hettinger is a city in Adams County, North Dakota. It falls under North Dakota's At-large congressional...

  20. Reeder, North Dakota: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Map This article is a stub. You can help OpenEI by expanding it. Reeder is a city in Adams County, North Dakota. It falls under North Dakota's At-large congressional...

  1. Haynes, North Dakota: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Map This article is a stub. You can help OpenEI by expanding it. Haynes is a city in Adams County, North Dakota. It falls under North Dakota's At-large congressional...

  2. Adams, North Dakota: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Hide Map This article is a stub. You can help OpenEI by expanding it. Adams is a city in Walsh County, North Dakota. It falls under North Dakota's At-large...

  3. Fletcher, North Carolina: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Hide Map This article is a stub. You can help OpenEI by expanding it. Fletcher is a town in Henderson County, North Carolina. It falls under North Carolina's 11st...

  4. DIELECTRIC WAKE FIELD RESONATOR ACCELERATOR MODULE

    SciTech Connect (OSTI)

    Hirshfield, Jay L.

    2013-11-06

    Results are presented from experiments, and numerical analysis of wake fields set up by electron bunches passing through a cylindrical or rectangular dielectric-lined structure. These bunches excite many TM-modes, with Ez components of the wake fields sharply localized on the axis of the structure periodically behind the bunches. The experiment with the cylindrical structure, carried out at ATF Brookhaven National Laboratory, used up to three 50 MeV bunches spaced by one wake field period (21 cm) to study the superposition of wake fields by measuring the energy loss of each bunch after it passed through the 53-cm long dielectric element. The millimeter-wave spectrum of radiation excited by the passage of bunches is also studied. Numerical analysis was aimed not only to simulate the behavior of our device, but in general to predict dielectric wake field accelerator performance. It is shown that one needs to match the radius of the cylindrical dielectric channel with the bunch longitudinal rms-length to achieve optimal performance.

  5. Synergistic Effects of Turbine Wakes and Atmospheric Stability on Power Production at an Onshore Wind Farm

    SciTech Connect (OSTI)

    Wharton, S; Lundquist, J K; Marjanovic, N

    2012-01-25

    This report examines the complex interactions between atmospheric stability and turbine-induced wakes on downwind turbine wind speed and power production at a West Coast North American multi-MW wind farm. Wakes are generated when the upwind flow field is distorted by the mechanical movement of the wind turbine blades. This has two consequences for downwind turbines: (1) the downwind turbine encounters wind flows with reduced velocity and (2) the downwind turbine encounters increased turbulence across multiple length scales via mechanical turbulence production by the upwind turbine. This increase in turbulence on top of ambient levels may increase aerodynamic fatigue loads on the blades and reduce the lifetime of turbine component parts. Furthermore, ambient atmospheric conditions, including atmospheric stability, i.e., thermal stratification in the lower boundary layer, play an important role in wake dissipation. Higher levels of ambient turbulence (i.e., a convective or unstable boundary layer) lead to higher turbulent mixing in the wake and a faster recovery in the velocity flow field downwind of a turbine. Lower levels of ambient turbulence, as in a stable boundary layer, will lead to more persistent wakes. The wake of a wind turbine can be divided into two regions: the near wake and far wake, as illustrated in Figure 1. The near wake is formed when the turbine structure alters the shape of the flow field and usually persists one rotor diameter (D) downstream. The difference between the air inside and outside of the near wake results in a shear layer. This shear layer thickens as it moves downstream and forms turbulent eddies of multiple length scales. As the wake travels downstream, it expands depending on the level of ambient turbulence and meanders (i.e., travels in non-uniform path). Schepers estimates that the wake is fully expanded at a distance of 2.25 D and the far wake region begins at 2-5 D downstream. The actual distance traveled before the wake

  6. The Influence of Rotor Blade Design on Wake Development

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Influence of Rotor Blade Design on Wake Development - Sandia Energy Energy Search Icon ... Twitter Google + Vimeo GovDelivery SlideShare The Influence of Rotor Blade Design on Wake ...

  7. Sandia Energy - Developing a Fast-Running Turbine Wake Model

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Developing a Fast-Running Turbine Wake Model Home Renewable Energy Energy Water Power News News & Events Developing a Fast-Running Turbine Wake Model Previous Next Developing a...

  8. Active Wake Redirection Control to Improve Energy Yield (Poster)

    SciTech Connect (OSTI)

    Churchfield, M. J.; Fleming, P.; DeGeorge, E.; Bulder, B; White, S. M.

    2014-10-01

    Wake effects can dramatically reduce the efficiency of waked turbines relative to the unwaked turbines. Wakes can be deflected, or 'redirected,' by applying yaw misalignment to the turbines. Yaw misalignment causes part of the rotor thrust vector to be pointed in the cross-stream direction, deflecting the flow and the wake. Yaw misalignment reduces power production, but the global increase in wind plant power due to decreased wake effect creates a net increase in power production. It is also a fairly simple control idea to implement at existing or new wind plants. We performed high-fidelity computational fluid dynamics simulations of the wake flow of the proposed Fishermen's Atlantic City Windfarm (FACW) that predict that under certain waking conditions, wake redirection can increase plant efficiency by 10%. This means that by applying wake redirection control, for a given watersheet area, a wind plant can either produce more power, or the same amount of power can be produced with a smaller watersheet area. With the power increase may come increased loads, though, due to the yaw misalignment. If misalignment is applied properly, or if layered with individual blade pitch control, though, the load increase can be mitigated. In this talk we will discuss the concept of wake redirection through yaw misalignment and present our CFD results of the FACW project. We will also discuss the implications of wake redirection control on annual energy production, and finally we will discuss plans to implement wake redirection control at FACW when it is operational.

  9. White County Rural E M C | Open Energy Information

    Open Energy Info (EERE)

    White County Rural E M C Address: 302 North Sixth Street Place: Monticello, IN Zip: 47960 Service Territory: Indiana Phone Number: (574) 583-7161 Website: www.cwremc.com Facebook:...

  10. Warren County, New York: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    Climate Zone Number 6 Climate Zone Subtype A. Places in Warren County, New York Bolton, New York Glens Falls North, New York Glens Falls, New York Hague, New York Horicon,...

  11. Starke County, Indiana: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    169-2006 Climate Zone Number 5 Climate Zone Subtype A. Places in Starke County, Indiana Bass Lake, Indiana Hamlet, Indiana Knox, Indiana Koontz Lake, Indiana North Judson, Indiana...

  12. Dissipation of turbulence in the wake of a wind turbine

    SciTech Connect (OSTI)

    Lundquist, J. K.; Bariteau, L.

    2014-11-06

    The wake of a wind turbine is characterized by increased turbulence and decreased wind speed. Turbines are generally deployed in large groups in wind farms, and so the behaviour of an individual wake as it merges with other wakes and propagates downwind is critical in assessing wind-farm power production. This evolution depends on the rate of turbulence dissipation in the wind-turbine wake, which has not been previously quantified in field-scale measurements. In situ measurements of winds and turbulence dissipation from the wake region of a multi-MW turbine were collected using a tethered lifting system (TLS) carrying a payload of high-rate turbulence probes. Ambient flow measurements were provided from sonic anemometers on a meteorological tower located near the turbine. Good agreement between the tower measurements and the TLS measurements was established for a case without a wind-turbine wake. When an operating wind turbine is located between the tower and the TLS so that the wake propagates to the TLS, the TLS measures dissipation rates one to two orders of magnitude higher in the wake than outside of the wake. These data, collected between two and three rotor diameters D downwind of the turbine, document the significant enhancement of turbulent kinetic energy dissipation rate within the wind-turbine wake. These wake measurements suggest that it may be useful to pursue modelling approaches that account for enhanced dissipation. Furthermore. comparisons of wake and non-wake dissipation rates to mean wind speed, wind-speed variance, and turbulence intensity are presented to facilitate the inclusion of these measurements in wake modelling schemes.

  13. Dissipation of turbulence in the wake of a wind turbine

    DOE Public Access Gateway for Energy & Science Beta (PAGES Beta)

    Lundquist, J. K.; Bariteau, L.

    2014-11-06

    The wake of a wind turbine is characterized by increased turbulence and decreased wind speed. Turbines are generally deployed in large groups in wind farms, and so the behaviour of an individual wake as it merges with other wakes and propagates downwind is critical in assessing wind-farm power production. This evolution depends on the rate of turbulence dissipation in the wind-turbine wake, which has not been previously quantified in field-scale measurements. In situ measurements of winds and turbulence dissipation from the wake region of a multi-MW turbine were collected using a tethered lifting system (TLS) carrying a payload of high-ratemore » turbulence probes. Ambient flow measurements were provided from sonic anemometers on a meteorological tower located near the turbine. Good agreement between the tower measurements and the TLS measurements was established for a case without a wind-turbine wake. When an operating wind turbine is located between the tower and the TLS so that the wake propagates to the TLS, the TLS measures dissipation rates one to two orders of magnitude higher in the wake than outside of the wake. These data, collected between two and three rotor diameters D downwind of the turbine, document the significant enhancement of turbulent kinetic energy dissipation rate within the wind-turbine wake. These wake measurements suggest that it may be useful to pursue modelling approaches that account for enhanced dissipation. Furthermore. comparisons of wake and non-wake dissipation rates to mean wind speed, wind-speed variance, and turbulence intensity are presented to facilitate the inclusion of these measurements in wake modelling schemes.« less

  14. Wake Electric Membership Corp | Open Energy Information

    Open Energy Info (EERE)

    North Carolina Service Territory: North Carolina Phone Number: 919.863.6499 or toll free 800.743.3155 Website: www.wemc.com Facebook: https:ebill.wemc.comwoViewer...

  15. Wake fields in SLAC Linac Collimators

    SciTech Connect (OSTI)

    Novokhatski, Alexander; Decker, F. -J.; Smith, H.; Sullivan, M.

    2014-12-02

    When a beam travels near collimator jaws, it gets an energy loss and a transverse kick due to the backreaction of the beam field diffracted from the jaws. The effect becomes very important for an intense short bunch when a tight collimation of the background beam halo is required. In the Linac Coherent Light Source at SLAC a collimation system is used to protect the undulators from radiation due to particles in the beam halo. The halo is most likely formed from gun dark current or dark current in some of the accelerating sections. However, collimators are also responsible for the generation of wake fields. The wake field effect from the collimators not only brings an additional energy jitter and change in the trajectory of the beam, but it also rotates the beam on the phase plane, which consequently leads to a degradation of the performance of the Free Electron Laser at the Linac Coherent Light Source. In this paper, we describe a model of the wake field radiation in the SLAC linac collimators. We use the results of a numerical simulation to illustrate the model. Based on the model, we derive simple formulas for the bunch energy loss and the average kick. In addition, we also present results from experimental measurements that confirm our model.

  16. Los Angeles County- LEED for County Buildings

    Broader source: Energy.gov [DOE]

    In January 2007, the Los Angeles County Board of Supervisors adopted rules to require that all new county buildings greater than 10,000 square feet be LEED Silver certified. All buildings...

  17. Flow visualization study of the MOD-2 wind turbine wake

    SciTech Connect (OSTI)

    Liu H.T.; Waite, J.W.; Hiester, T.R.; Tacheron, P.H.; Srnsky, R.A.

    1983-06-01

    The specific objectives of the study reported were: to determine the geometry of the MOD-2 wind turbine wake in terms of wake height and width as a function of downstream distance under two conditions of atmospheric stability; to estimate the mean velocity deficit at several downstream stations in the turbine wake; and to investigate the behavior of the rotor-generated vortices, particularly their configuration and persistence. The background of the wake problem is briefly examined, including a discussion of the critical issues that the flow visualization study addresses. Experimental techniques and data analysis methods are described in detail. (LEW)

  18. Virtual LIDAR Model Helps Researchers Plan for Wake Steering...

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Energy Conversion Efficiency Solar Energy Wind Energy Water Power Supercritical CO2 ... Facility to investigate the use of wind turbine yaw control to direct wakes, a promising ...

  19. Virtual LIDAR model helps researchers plan for the Wake Steering...

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Energy Conversion Efficiency Solar Energy Wind Energy Water Power Supercritical CO2 ... Facility to investigate the use of wind turbine yaw control to direct wakes, a promising ...

  20. Visualizing Wind Farm Wake Losses using SCADA Data

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Continuous Reliability Enhancement for Wind Visualizing Wind Farm Wake Losses using SCADA ... the Department of Energy's Continuous Reliability Enhancement for Wind (CREW) project. ...

  1. Sandia Energy - Post-Processing and Analysis of Wake Measurements...

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Post-Processing and Analysis of Wake Measurements Around a Scaled Turbine Home Renewable Energy Energy Water Power Partnership News News & Events Post-Processing and Analysis of...

  2. Geometrical Wake of a Smooth Flat Collimator

    SciTech Connect (OSTI)

    Stupakov, G.V.; /SLAC

    2011-09-09

    A transverse geometrical wake generated by a beam passing through a smooth flat collimator with a gradually varying gap between the upper and lower walls is considered. Based on generalization of the approach recently developed for a smooth circular taper we reduce the electromagnetic problem of the impedance calculation to the solution of two much simpler static problems - a magnetostatic and an electrostatic ones. The solution shows that in the limit of not very large frequencies, the impedance increases with the ratio h/d where h is the width and d is the distance between the collimating jaws. Numerical results are presented for the NLC Post Linac collimator.

  3. Thermal wake/vessel detection technique

    DOE Patents [OSTI]

    Roskovensky, John K.; Nandy, Prabal; Post, Brian N

    2012-01-10

    A computer-automated method for detecting a vessel in water based on an image of a portion of Earth includes generating a thermal anomaly mask. The thermal anomaly mask flags each pixel of the image initially deemed to be a wake pixel based on a comparison of a thermal value of each pixel against other thermal values of other pixels localized about each pixel. Contiguous pixels flagged by the thermal anomaly mask are grouped into pixel clusters. A shape of each of the pixel clusters is analyzed to determine whether each of the pixel clusters represents a possible vessel detection event. The possible vessel detection events are represented visually within the image.

  4. Institutional-building grants program: the county-government perspective

    SciTech Connect (OSTI)

    Flick, S.

    1982-03-01

    The National Association of Counties Research, Inc. (NACoR) energy team developed a questionnaire on the Institutional Buildings Grant Program (IBGP) and distributed it to every county government in the country. Responses were received from approximately 600 counties in 47 states (a response rate of about 20%). After completing a preliminary review of the questionnaire findings, NACoR conducted six case studies to identify the various methods state energy offices and county governments used to implement the IBGP. The case studies presented here are divided into two groups: examples of successful state IBGP's - New York, Washington, and Wisconsin; and examples of unsuccessful state IBGP's - California, North Carolina, and South Carolina. (MHR)

  5. Wake potentials of the ILC Interaction Region

    SciTech Connect (OSTI)

    Novokhatski, A.; /SLAC

    2011-08-16

    The vacuum chamber of the ILC Interaction Region (IR) is optimized for best detector performance. It has special shaping to minimize additional backgrounds due to the metal part of the chamber. Also, for the same reason this thin vacuum chamber does not have water cooling. Therefore, small amounts of power, which may be deposited in the chamber, can be enough to raise the chamber to a high temperature. One of the sources of 'heating' power is the electromagnetic field of the beam. This field diffracts by non-regularities of the beam pipe and excites free-propagating fields, which are then absorbed by the pipe wall. In addition we have a heating power of the image currents due to finite conductivity of the metallic wall. We will discuss these effects as updating the previous results. The conclusions of this report are: (1) The amount of the beam energy loss in IR is almost equal to the energy loss in one ILC (TESLA) accelerating cryo-module; (2) Addition energy spread at IR is very small; (3) Spectrum of the wake fields is limited 300 GHz; (4) Average power of the wake fields excited in IR is 30 W for nominal ILC parameters; and (5) Pulse power in this case is 6 kilowatts.

  6. Manufacturing's Wake-Up Call | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    Manufacturing's Wake-Up Call Manufacturing's Wake-Up Call booz_and_um_aug2011.pdf (609.61 KB) More Documents & Publications Visiting Speaker Program - January 12, 2009 CEMI Days Factsheet Report to the President on Capturing Domestic Competitive Advantage in Advanced Manufacturing

  7. Power County | Open Energy Information

    Open Energy Info (EERE)

    County Jump to: navigation, search Name Power County Facility Power County Sector Wind energy Facility Type Commercial Scale Wind Facility Status In Service Owner CG Power...

  8. Homestead Meadows North, Texas: Energy Resources | Open Energy...

    Open Energy Info (EERE)

    help OpenEI by expanding it. Homestead Meadows North is a census-designated place in El Paso County, Texas.1 References US Census Bureau 2005 Place to 2006 CBSA Retrieved...

  9. Palm Springs North, Florida: Energy Resources | Open Energy Informatio...

    Open Energy Info (EERE)

    Hide Map This article is a stub. You can help OpenEI by expanding it. Palm Springs North is a census-designated place in Miami-Dade County, Florida.1 References ...

  10. North Crows Nest, Indiana: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    article is a stub. You can help OpenEI by expanding it. North Crows Nest is a town in Marion County, Indiana. It falls under Indiana's 7th congressional district.12 References...

  11. North Oaks, Minnesota: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    This article is a stub. You can help OpenEI by expanding it. North Oaks is a city in Ramsey County, Minnesota. It falls under Minnesota's 4th congressional district.12...

  12. Seven Lakes, North Carolina: Energy Resources | Open Energy Informatio...

    Open Energy Info (EERE)

    stub. You can help OpenEI by expanding it. Seven Lakes is a census-designated place in Moore County, North Carolina.1 References US Census Bureau 2005 Place to 2006 CBSA...

  13. North Washington, Colorado: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    You can help OpenEI by expanding it. North Washington is a census-designated place in Adams County, Colorado.1 References US Census Bureau 2005 Place to 2006 CBSA Retrieved...

  14. Lakeland North, Washington: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    You can help OpenEI by expanding it. Lakeland North is a census-designated place in King County, Washington.1 References US Census Bureau 2005 Place to 2006 CBSA...

  15. North Bend, Washington: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    This article is a stub. You can help OpenEI by expanding it. North Bend is a city in King County, Washington. It falls under Washington's 8th congressional district.12...

  16. North Bay Village, Florida: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    it. North Bay Village is a city in Miami-Dade County, Florida. It falls under Florida's 20th congressional district.12 References US Census Bureau Incorporated place and...

  17. North Kensington, Maryland: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    can help OpenEI by expanding it. North Kensington is a census-designated place in Montgomery County, Maryland.1 References US Census Bureau 2005 Place to 2006 CBSA...

  18. Oak Ridge North, Texas: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    article is a stub. You can help OpenEI by expanding it. Oak Ridge North is a city in Montgomery County, Texas. It falls under Texas's 8th congressional district.12 References...

  19. North Potomac, Maryland: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    You can help OpenEI by expanding it. North Potomac is a census-designated place in Montgomery County, Maryland.1 References US Census Bureau 2005 Place to 2006 CBSA...

  20. North Wales, Pennsylvania: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    article is a stub. You can help OpenEI by expanding it. North Wales is a borough in Montgomery County, Pennsylvania. It falls under Pennsylvania's 13th congressional...

  1. North Bethesda, Maryland: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    You can help OpenEI by expanding it. North Bethesda is a census-designated place in Montgomery County, Maryland.1 References US Census Bureau 2005 Place to 2006 CBSA...

  2. North Chevy Chase, Maryland: Energy Resources | Open Energy Informatio...

    Open Energy Info (EERE)

    is a stub. You can help OpenEI by expanding it. North Chevy Chase is a village in Montgomery County, Maryland. It falls under Maryland's 8th congressional district.12...

  3. Broward County- Green Building Policy

    Broader source: Energy.gov [DOE]

    In October 2008, Board of County Commissioners of Broward County passed a resolution creating the County Green Building Policy. All new County-owned and operated buildings must achieve a minimum...

  4. North Carolina - Compare - U.S. Energy Information Administration (EIA)

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

    North Carolina North Carolina

  5. North Carolina - Rankings - U.S. Energy Information Administration (EIA)

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

    North Carolina North Carolina

  6. North Carolina - Search - U.S. Energy Information Administration (EIA)

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

    North Carolina North Carolina

  7. County Wind Ordinance Standards

    Broader source: Energy.gov [DOE]

    Assembly Bill 45 of 2009 authorized counties to adopt ordinances to provide for the installation of small wind systems (50 kW or smaller) outside urbanized areas but within the county's...

  8. Kiowa County Commons Building

    Broader source: Energy.gov [DOE]

    This poster describes the energy efficiency features and sustainable materials used in the Kiowa County Commons Building in Greensburg, Kansas.

  9. Wind Turbine Wake-Redirection Control at the Fishermen's Atlantic City Windfarm: Preprint

    SciTech Connect (OSTI)

    Churchfield, M.; Fleming, P.; Bulder, B.; White, S.

    2015-05-06

    In this paper, we will present our work towards designing a control strategy to mitigate wind turbine wake effects by redirecting the wakes, specifically applied to the Fishermen’s Atlantic City Windfarm (FACW), proposed for deployment off the shore of Atlantic City, New Jersey. As wind turbines extract energy from the air, they create low-speed wakes that extend behind them. Full wake recovery Full wake recovery to the undisturbed wind speed takes a significant distance. In a wind energy plant the wakes of upstream turbines may travel downstream to the next row of turbines, effectively subjecting them to lower wind speeds, meaning these waked turbines will produce less power.

  10. Wake Fields in the Super B Factory Interaction Region

    SciTech Connect (OSTI)

    Weathersby, Stephen; Novokhatski, Alexander; /SLAC

    2011-06-02

    The geometry of storage ring collider interaction regions present an impedance to beam fields resulting in the generation of additional electromagnetic fields (higher order modes or wake fields) which affect the beam energy and trajectory. These affects are computed for the Super B interaction region by evaluating longitudinal loss factors and averaged transverse kicks for short range wake fields. Results indicate at least a factor of 2 lower wake field power generation in comparison with the interaction region geometry of the PEP-II B-factory collider. Wake field reduction is a consderation in the Super B design. Transverse kicks are consistent with an attractive potential from the crotch nearest the beam trajectory. The longitudinal loss factor scales as the -2.5 power of the bunch length. A factor of 60 loss factor reduction is possible with crotch geometry based on an intersecting tubes model.