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<record rownumber="1">
<dc:ostiId>584878</dc:ostiId>
<dc:identifier>SAND--95-2914</dc:identifier>
<dc:title>GeoEnergy technology</dc:title>
<dc:pubDate>1980-12-31</dc:pubDate>
<dc:sponsorOrg>USDOE Office of Energy Research, Washington, DC (United States)</dc:sponsorOrg>
<dc:researchOrg>Sandia National Labs., Albuquerque, NM (United States)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-02-18</dc:dateEntry>
<dc:resourceType>Technical Report</dc:resourceType>
<dcq:identifier-purl type="application/pdf">http://www.osti.gov/geothermal/servlets/purl/584878-P1qAuZ/webviewable/</dcq:identifier-purl>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=584878</dc:citation>
<dc:subject>29 ENERGY PLANNING AND POLICY; RESEARCH PROGRAMS; COAL; PETROLEUM; NATURAL GAS; SYNTHETIC PETROLEUM; GEOTHERMAL ENERGY; ENERGY CONVERSION; PRODUCTION; HEAT EXTRACTION; US DOE; IN-SITU GASIFICATION; ENHANCED RECOVERY; COAL LIQUEFACTION; GEOTHERMAL WELLS</dc:subject>
<dc:subjectRelated>Geothermal Legacy</dc:subjectRelated>
</record>
 
 
<record rownumber="2">
<dc:ostiId>20017442</dc:ostiId>
<dc:identifier>20017442</dc:identifier>
<dc:title>The boron isotope systematics of Icelandic geothermal waters: 1. Meteoric water charged systems</dc:title>
<dc:authors>Aggarwal, J.K.; Palmer, M.R.; Bullen, T.D.; Arnorsson, S.; Ragnarsdottir, K.V.</dc:authors>
<dc:pubDate>2000-02-01</dc:pubDate>
<dc:researchOrg>Univ. Muenster (DE)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20017442</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; GEOTHERMAL FLUIDS; BORON 11; ISOTOPE RATIO; ICELAND; CHLORIDES; GEOTHERMAL SYSTEMS; ROCK-FLUID INTERACTIONS</dc:subject>
</record>
 
 
<record rownumber="3">
<dc:ostiId>20076053</dc:ostiId>
<dc:identifier>20076053</dc:identifier>
<dc:title>Energy potential of geothermal energy in Germany</dc:title>
<dc:authors>Kayser, M.; Kaltschmitt, M.</dc:authors>
<dc:pubDate>2000-06-01</dc:pubDate>
<dc:researchOrg>Univ. of Stuttgart (DE)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20076053</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; 29 ENERGY PLANNING, POLICY AND ECONOMY; FEDERAL REPUBLIC OF GERMANY; GEOTHERMAL ENERGY; RESOURCE POTENTIAL; ENERGY DEMAND; GEOTHERMAL HEATING SYSTEMS</dc:subject>
</record>
 
 
<record rownumber="4">
<dc:ostiId>20006257</dc:ostiId>
<dc:identifier>20006257</dc:identifier>
<dc:title>Source processes of industrially-induced earthquakes at The Geysers geothermal area, California</dc:title>
<dc:authors>Ross, A.; Foulger, G.R.; Julian, B.R.</dc:authors>
<dc:pubDate>1999-12-01</dc:pubDate>
<dc:researchOrg>Amoco, London (GB)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20006257</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; GEYSERS GEOTHERMAL FIELD; MICROEARTHQUAKES; FLUID INJECTION; FLUID WITHDRAWAL; STEAM</dc:subject>
</record>
 
 
<record rownumber="5">
<dc:ostiId>20020930</dc:ostiId>
<dc:identifier>20020930</dc:identifier>
<dc:title>Paleotemperature analysis of Aliaga (Izmir, Turkey) geothermal field</dc:title>
<dc:authors>Sengueler, I.; Sener, M.; Koek, M.V.</dc:authors>
<dc:pubDate>2000-05-01</dc:pubDate>
<dc:researchOrg>General Directorate of Mineral Research and Exploration of Turkey, Ankara (TR)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20020930</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; TURKEY; GEOTHERMAL FIELDS; PALEOTEMPERATURE; MINERALOGY; PETROGRAPHY; RESERVOIR ROCK; MATURATION; VITRINITE; REFLECTIVITY</dc:subject>
</record>
 
 
<record rownumber="6">
<dc:ostiId>20962191</dc:ostiId>
<dc:identifier>20962191</dc:identifier>
<dc:title>Geothermal Power Generation</dc:title>
<dc:pubDate>2007-11-15</dc:pubDate>
<dc:researchOrg>Research Reports International, Inc., Evergreen, CO (United States)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2011-03-24</dc:dateEntry>
<dc:resourceType>Miscellaneous</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20962191</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; GEOTHERMAL ENERGY; POWER GENERATION; MARKET; FORECASTING; INDUSTRY; DEVELOPERS</dc:subject>
</record>
 
 
<record rownumber="7">
<dc:ostiId>20003863</dc:ostiId>
<dc:identifier>20003863</dc:identifier>
<dc:title>Use of magnetotelluric signals from 50 Hz power lines for resistivity mapping of geothermal fields in New Zealand</dc:title>
<dc:authors>Risk, G.F.; Caldwell, T.G.; Bibby, H.M.</dc:authors>
<dc:pubDate>1999-11-01</dc:pubDate>
<dc:researchOrg>Inst. of Geological and Nuclear Sciences, Lower Hutt (NZ)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20003863</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; NEW ZEALAND; GEOTHERMAL FIELDS; MAPPING; MAGNETOTELLURIC SURVEYS; POWER TRANSMISSION LINES; DATA ANALYSIS; ELECTRIC CONDUCTIVITY</dc:subject>
</record>
 
 
<record rownumber="8">
<dc:ostiId>20006032</dc:ostiId>
<dc:identifier>20006032</dc:identifier>
<dc:title>Optimum design and running of PHEs in geothermal district heating</dc:title>
<dc:authors>Chuanshan, D.; Jun, L.</dc:authors>
<dc:pubDate>1999-12-01</dc:pubDate>
<dc:researchOrg>Tianjin Univ., (CN)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20006032</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; 32 ENERGY CONSERVATION, CONSUMPTION, AND UTILIZATION; HEAT EXCHANGERS; PLATES; CAPACITY; DESIGN; PERFORMANCE; GEOTHERMAL HEATING SYSTEMS</dc:subject>
</record>
 
 
<record rownumber="9">
<dc:ostiId>20006172</dc:ostiId>
<dc:identifier>20006172</dc:identifier>
<dc:title>Fungi from geothermal soils in Yellowstone National Park</dc:title>
<dc:authors>Redman, R.S.; Litvintseva, A.; Sheehan, K.B.; Henson, J.M.; Rodriguez, R.J.</dc:authors>
<dc:pubDate>1999-12-01</dc:pubDate>
<dc:sponsorOrg>National Science Foundation; US Department of Energy; US Department of Agriculture; US Geological Survey; US Department of the Army</dc:sponsorOrg>
<dc:researchOrg>Geological Survey, Seattle, WA (US); Univ. of Washington, Seattle, WA (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20006172</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; GEOTHERMAL FIELDS; SOILS; FUNGI; METALS; PH VALUE; SPECIES DIVERSITY; POPULATION DYNAMICS; MONTANA; NATURE RESERVES; BIOLOGICAL EFFECTS</dc:subject>
</record>
 
 
<record rownumber="10">
<dc:ostiId>20017445</dc:ostiId>
<dc:identifier>20017445</dc:identifier>
<dc:title>Composition of pore and spring waters from Baby Bare: Global implications of geochemical fluxes from a ridge flank hydrothermal system</dc:title>
<dc:authors>Wheat, C.G.; Mottl, M.J.</dc:authors>
<dc:pubDate>2000-02-01</dc:pubDate>
<dc:researchOrg>Univ. of Alaska, Fairbanks, AK (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20017445</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; HYDROTHERMAL SYSTEMS; PACIFIC OCEAN; GEOTHERMAL FLUIDS; WATER CHEMISTRY; INTERSTITIAL WATER; ROCK-FLUID INTERACTIONS; LEACHING; ELEMENTS</dc:subject>
</record>
 
 
<record rownumber="11">
<dc:ostiId>20076059</dc:ostiId>
<dc:identifier>20076059</dc:identifier>
<dc:title>Depositional facies and aqueous-solid geochemistry of travertine-depositing hot springs (Angel Terrace, Mammoth Hot Springs, Yellowstone National Park, USA)</dc:title>
<dc:authors>Fouke, B.W.; Farmer, J.D.; Des Marais, D.J.; Pratt, L.; Sturchio, N.C.; Burns, P.C.; Discipulo, M.K.</dc:authors>
<dc:pubDate>2000-05-01</dc:pubDate>
<dc:researchOrg>Univ. of Illinois, Urbana, IL (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20076059</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; YELLOWSTONE NATIONAL PARK; HOT SPRINGS; GEOTHERMAL FLUIDS; GEOCHEMISTRY; DEPOSITION; TRAVERTINE; SULFUR-OXIDIZING BACTERIA</dc:subject>
</record>
 
 
<record rownumber="12">
<dc:ostiId>20076060</dc:ostiId>
<dc:identifier>20076060</dc:identifier>
<dc:title>Trigonal dendritic calcite crystals forming from hot spring waters at Waikite, North Island, New Zealand</dc:title>
<dc:authors>Jones, B.; Renault, R.W.; Rosen, M.R.</dc:authors>
<dc:pubDate>2000-05-01</dc:pubDate>
<dc:researchOrg>Univ. of Alberta, Edmonton, Alberta (CA)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20076060</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; NEW ZEALAND; HOT SPRINGS; GEOTHERMAL FLUIDS; CALCITE; SILICA; PRECIPITATION; CRYSTAL STRUCTURE; CARBON DIOXIDE; DEGASSING</dc:subject>
</record>
 
 
<record rownumber="13">
<dc:ostiId>20677702</dc:ostiId>
<dc:identifier>20677702</dc:identifier>
<dc:title>Promoting Geothermal Energy: Air Emissions Comparison and Externality Analysis</dc:title>
<dc:authors>Kagel, Alyssa; Gawell, Karl</dc:authors>
<dc:pubDate>2005-09-01</dc:pubDate>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20677702</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; 29 ENERGY PLANNING, POLICY AND ECONOMY; GEOTHERMAL ENERGY; EXTERNAL COST; AIR POLLUTION; GOVERNMENT POLICIES; POLITICAL ASPECTS; LEGISLATION</dc:subject>
</record>
 
 
<record rownumber="14">
<dc:ostiId>20972059</dc:ostiId>
<dc:identifier>20972059</dc:identifier>
<dc:title>Environment and energy in Iceland: A comparative analysis of values and impacts</dc:title>
<dc:authors>Thorhallsdottir, Thora Ellen [Institute of Biology (Iceland)]. E-mail: theth@hi.is</dc:authors>
<dc:pubDate>2007-08-15</dc:pubDate>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20972059</dc:citation>
<dc:subject>29 ENERGY PLANNING, POLICY AND ECONOMY; ECOSYSTEMS; ENVIRONMENT; ENVIRONMENTAL IMPACTS; GEOTHERMAL ENERGY; GEOTHERMAL FIELDS; HYDROELECTRIC POWER; HYDROLOGY; ICELAND</dc:subject>
</record>
 
 
<record rownumber="15">
<dc:ostiId>20000953</dc:ostiId>
<dc:identifier>20000953</dc:identifier>
<dc:title>Calorimetric studies of the energetics of order-disorder in the system Mg{sub 1{minus}x}Fe{sub x}Ca(CO{sub 3}){sub 2}</dc:title>
<dc:authors>Navrotsky, A.; Dooley, D.; Reeder, R.; Brady, P.</dc:authors>
<dc:pubDate>1999-10-01</dc:pubDate>
<dc:sponsorOrg>US Department of Energy</dc:sponsorOrg>
<dc:researchOrg>Univ. of California, Davis, CA (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20000953</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; ANKERITE; DOLOMITE; ORDER-DISORDER TRANSFORMATIONS; TRANSITION HEAT</dc:subject>
</record>
 
 
<record rownumber="16">
<dc:ostiId>20017405</dc:ostiId>
<dc:identifier>20017405</dc:identifier>
<dc:title>Removal of boron from wastewater of geothermal power plant by selective ion-exchange resins. 2. Column sorption--elution studies</dc:title>
<dc:authors>Badruk, M.; Kabay, N.; Demircioglu, M.; Mordogan, H.; Ipekoglu, U.</dc:authors>
<dc:pubDate>1999-11-01</dc:pubDate>
<dc:researchOrg>Mineral Research and Exploration Inst., Izmir (TR)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20017405</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; GEOTHERMAL POWER PLANTS; WASTE WATER; WATER TREATMENT; BORON; ION EXCHANGE; EXTRACTION COLUMNS; ION EXCHANGE MATERIALS; PERFORMANCE; ELUTRIATION; KIZILDERE GEOTHERMAL FIELD</dc:subject>
</record>
 
 
<record rownumber="17">
<dc:ostiId>20215607</dc:ostiId>
<dc:identifier>20215607</dc:identifier>
<dc:title>Volume strain within the Geysers geothermal field</dc:title>
<dc:authors>Mossop, Antony [Department of Geophysics, Stanford University, Stanford, California (United States)]; Segall, Paul [Department of Geophysics, Stanford University, Stanford, California (United States)]</dc:authors>
<dc:pubDate>1999-12-10</dc:pubDate>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20215607</dc:citation>
<dc:subject>58 GEOSCIENCES; 15 GEOTHERMAL ENERGY; GEYSERS GEOTHERMAL FIELD; GEOTHERMAL ENERGY; STRAINS; GEODESY; GEOPHYSICAL SURVEYS; EARTHQUAKES; SEISMICITY; STRAIN RATE; MECHANICAL PROPERTIES; EXPERIMENTAL DATA; THEORETICAL DATA</dc:subject>
</record>
 
 
<record rownumber="18">
<dc:ostiId>21064190</dc:ostiId>
<dc:identifier>21064190</dc:identifier>
<dc:title>Assessment of the Enhanced Geothermal System Resource Base of the United States</dc:title>
<dc:authors>Blackwell, David D., E-mail: blackwel@smu.edu; Negraru, Petru T.; Richards, Maria C. [Department of Geological Sciences, Southern Methodist University, Geothermal Lab (United States)]</dc:authors>
<dc:pubDate>2006-12-15</dc:pubDate>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=21064190</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; ECONOMIC POLICY; ENERGY POLICY; GEOLOGIC MODELS; GEOTHERMAL ENERGY; GEOTHERMAL SYSTEMS; HYDROCARBONS; MAPS; NATURAL GAS FIELDS; SEDIMENTS; THERMAL CONDUCTIVITY; USA</dc:subject>
</record>
 
 
<record rownumber="19">
<dc:ostiId>21238858</dc:ostiId>
<dc:identifier>21238858</dc:identifier>
<dc:title>Heat Flow and Geothermal Potential in the South-Central United States</dc:title>
<dc:authors>Negraru, Petru T., E-mail: pnegraru@smu.edu; Blackwell, David D. [Southern Methodist University (United States)]; Erkan, Kamil [Ohio State University, School of Earth Sciences (United States)]</dc:authors>
<dc:pubDate>2008-12-15</dc:pubDate>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=21238858</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; ARKANSAS; BASEMENTS; COST; DRILLING; GEOPRESSURED SYSTEMS; GEOTHERMAL EXPLORATION; GEOTHERMAL SYSTEMS; HEAT FLUX; HYDROCARBONS; LOUISIANA; MISSISSIPPI; ROCKY MOUNTAINS; TEXAS; ZONES</dc:subject>
</record>
 
 
<record rownumber="20">
<dc:ostiId>20085663</dc:ostiId>
<dc:identifier>20085663</dc:identifier>
<dc:title>An AHP approach for evaluating geothermal district energy systems[Analytical Hierarchy Process]</dc:title>
<dc:authors>Eltez, A.; Kilkis, I.B.; Eltez, M.</dc:authors>
<dc:pubDate>1999-07-01</dc:pubDate>
<dc:researchOrg>Ege Univ., Izmir (TR)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2011-03-24</dc:dateEntry>
<dc:resourceType>Conference</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20085663</dc:citation>
<dc:subject>32 ENERGY CONSERVATION, CONSUMPTION, AND UTILIZATION; 15 GEOTHERMAL ENERGY; GEOTHERMAL DISTRICT HEATING; DESIGN; TURKEY; GEOTHERMAL POWER PLANTS; HYBRID SYSTEMS; MATHEMATICAL MODELS; COST BENEFIT ANALYSIS; DUAL-PURPOSE POWER PLANTS</dc:subject>
</record>
 
 
<record rownumber="21">
<dc:ostiId>20000931</dc:ostiId>
<dc:identifier>20000931</dc:identifier>
<dc:title>Reversed calcite morphologies induced by microscopic growth kinetics: Insight into biomineralization</dc:title>
<dc:authors>Teng, H.H.; Dove, P.M.; DeYoreo, J.J.</dc:authors>
<dc:pubDate>1999-09-01</dc:pubDate>
<dc:sponsorOrg>US Department of Energy</dc:sponsorOrg>
<dc:researchOrg>Georgia Inst. of Tech., Atlanta, GA (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20000931</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; 36 MATERIALS SCIENCE; CALCITE; CRYSTAL GROWTH; SUPERSATURATION; CRYSTAL STRUCTURE; MINERALIZATION</dc:subject>
</record>
 
 
<record rownumber="22">
<dc:ostiId>20000934</dc:ostiId>
<dc:identifier>20000934</dc:identifier>
<dc:title>Widespread assimilation of a seawater-derived component at Loihi Seamount, Hawaii</dc:title>
<dc:authors>Kent, A.J.R.; Clague, D.A.; Honda, M.; Stolper, E.M.; Hutcheon, I.D.; Norman, M.D.</dc:authors>
<dc:pubDate>1999-09-01</dc:pubDate>
<dc:sponsorOrg>National Science Foundation; US Department of Energy</dc:sponsorOrg>
<dc:researchOrg>California Inst. of Tech., Pasadena, CA (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20000934</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; HAWAII; VOLCANOES; VOLCANIC ROCKS; SEAWATER; GEOCHEMISTRY; CHLORIDES; GEOLOGIC HISTORY</dc:subject>
</record>
 
 
<record rownumber="23">
<dc:ostiId>20003895</dc:ostiId>
<dc:identifier>20003895</dc:identifier>
<dc:title>Dry melting of high albite</dc:title>
<dc:authors>Anovitz, L.M.: Blencoe, J.G.</dc:authors>
<dc:pubDate>1999-12-01</dc:pubDate>
<dc:sponsorOrg>US Department of Energy</dc:sponsorOrg>
<dc:researchOrg>Oak Ridge National Lab., TN (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20003895</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; 58 GEOSCIENCES; FELDSPARS; MELTING; THERMODYNAMIC PROPERTIES; PHASE STUDIES; MATHEMATICAL MODELS</dc:subject>
</record>
 
 
<record rownumber="24">
<dc:ostiId>20006254</dc:ostiId>
<dc:identifier>20006254</dc:identifier>
<dc:title>An interferometric study of the dissolution kinetics of anorthite: The role of reactive surface area</dc:title>
<dc:authors>Luettge, A.; Bolton, E.W.; Lasaga, A.C.</dc:authors>
<dc:pubDate>1999-07-01</dc:pubDate>
<dc:sponsorOrg>US Department of Energy; National Science Foundation; Alexander von Humboldt Foundation</dc:sponsorOrg>
<dc:researchOrg>Yale Univ., New Haven, CT (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20006254</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; 58 GEOSCIENCES; ANORTHITE; DISSOLUTION; CHEMICAL REACTION KINETICS; SURFACE AREA</dc:subject>
</record>
 
 
<record rownumber="25">
<dc:ostiId>20006262</dc:ostiId>
<dc:identifier>20006262</dc:identifier>
<dc:title>The speciation of dissolved water in rhyolitic melt</dc:title>
<dc:authors>Ihinger, P.D.; Zhang, Y.; Stolper, E.M.</dc:authors>
<dc:pubDate>1999-11-01</dc:pubDate>
<dc:sponsorOrg>National Science Foundation; US Department of Energy</dc:sponsorOrg>
<dc:researchOrg>California Inst. of Tech., Pasadena, CA (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20006262</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; 58 GEOSCIENCES; RHYOLITES; GLASS; MOISTURE; MAGMA; CONCENTRATION RATIO</dc:subject>
</record>
 
 
<record rownumber="26">
<dc:ostiId>20006271</dc:ostiId>
<dc:identifier>20006271</dc:identifier>
<dc:title>Porosity of the melting zone and variations in the solid mantle upwelling rate beneath Hawaii: Inferences from {sup 238}U-{sup 230}Th-{sup 226}Ra and {sup 235}U-{sup 231}Pa disequilibria</dc:title>
<dc:authors>Sims, K.W.W.; DePaolo, D.J.; Murrell, M.T.; Baldridge, W.S.; Goldstein, S.; Clague, D.; Jull, M.</dc:authors>
<dc:pubDate>1999-12-01</dc:pubDate>
<dc:sponsorOrg>US Department of Energy</dc:sponsorOrg>
<dc:researchOrg>Univ. of California, Berkeley, CA (US); Los Alamos National Lab., NM (US); Woods Hole Oceanographic Institution, MA (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20006271</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; HAWAII; EARTH MANTLE; LAVA; POROSITY; MASS TRANSFER; ISOTOPE RATIO</dc:subject>
</record>
 
 
<record rownumber="27">
<dc:ostiId>20017448</dc:ostiId>
<dc:identifier>20017448</dc:identifier>
<dc:title>U, Ra and Ba incorporation during precipitation of hydrothermal carbonates: Implications for {sup 226}Ra-Ba dating of impure travertines</dc:title>
<dc:authors>Rihs, S.; Condomines, M.; Sigmarsson, O.</dc:authors>
<dc:pubDate>2000-02-01</dc:pubDate>
<dc:researchOrg>Univ. Blaise Pascal et CNRS (FR)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20017448</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; HYDROTHERMAL SYSTEMS; CALCITE; URANIUM; RADIUM; BARIUM; PRECIPITATION; ISOTOPE DATING; CARBONATE MINERALS</dc:subject>
</record>
 
 
<record rownumber="28">
<dc:ostiId>20020895</dc:ostiId>
<dc:identifier>20020895</dc:identifier>
<dc:title>Core level electron binding energies of realgar (As{sub 4}S{sub 4})</dc:title>
<dc:authors>Pratt, A.R.; Nesbitt, H.W.</dc:authors>
<dc:pubDate>2000-04-01</dc:pubDate>
<dc:researchOrg>CANMET, Ottawa, Ontario (CA)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20020895</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; ARSENIC SULFIDES; BINDING ENERGY; HYDROTHERMAL SYSTEMS; HOT SPRINGS; MOLECULAR STRUCTURE</dc:subject>
</record>
 
 
<record rownumber="29">
<dc:ostiId>20013401</dc:ostiId>
<dc:identifier>20013401</dc:identifier>
<dc:title>Resistance of sodium polyphosphate-modified fly ash/calcium aluminate blend cements to hot H{sub 2}SO{sub 4} solution</dc:title>
<dc:authors>Sugama, T.; Weber, L.; Brothers, L.E.</dc:authors>
<dc:pubDate>1999-12-01</dc:pubDate>
<dc:researchOrg>Brookhaven National Lab., Upton, NY (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20013401</dc:citation>
<dc:subject>01 COAL, LIGNITE, AND PEAT; 36 MATERIALS SCIENCE; 15 GEOTHERMAL ENERGY; CEMENTS; FLY ASH; WASTE PRODUCT UTILIZATION; CORROSION RESISTANCE; SULFURIC ACID; CORROSION PRODUCTS; GEOTHERMAL WELLS; WELL COMPLETION; CEMENTING</dc:subject>
</record>
 
 
<record rownumber="30">
<dc:ostiId>20000929</dc:ostiId>
<dc:identifier>20000929</dc:identifier>
<dc:title>The influence of CaCl{sub 2} on the kinetics of the reaction 1 tremolite + 3 calcite + 2 quartz {yields} 5 diopside + 3 CO{sub 2} + 1 H{sub 2}O. An experimental investigation</dc:title>
<dc:authors>Winkler, U.; Luettge, A.</dc:authors>
<dc:pubDate>1999-05-01</dc:pubDate>
<dc:sponsorOrg>Alexander von Humboldt Foundation; US Department of Energy; National Science Foundation</dc:sponsorOrg>
<dc:researchOrg>Univ. Tuebingen (DE)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20000929</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; CALCIUM CHLORIDES; CATALYTIC EFFECTS; DIOPSIDE; SYNTHESIS; TEMPERATURE DEPENDENCE; CHEMICAL REACTION KINETICS; ACTIVATION ENERGY; METAMORPHISM</dc:subject>
</record>
 
 
<record rownumber="31">
<dc:ostiId>20000936</dc:ostiId>
<dc:identifier>20000936</dc:identifier>
<dc:title>Seafloor hydrothermal clay alteration at Jade in the back-arc Okinawa Trough: Mineralogy, geochemistry and isotope characteristics</dc:title>
<dc:authors>Marumo, Katsumi; Hattori, K.H.</dc:authors>
<dc:pubDate>1999-09-01</dc:pubDate>
<dc:researchOrg>Geological Survey of Japan, Tsukuba, Ibaraki (JP)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20000936</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; HYDROTHERMAL SYSTEMS; SEA BED; CLAYS; HYDROTHERMAL ALTERATION; MINERALOGY; GEOCHEMISTRY; ISOTOPE RATIO; GEOLOGIC HISTORY</dc:subject>
</record>
 
 
<record rownumber="32">
<dc:ostiId>20000951</dc:ostiId>
<dc:identifier>20000951</dc:identifier>
<dc:title>Nitrogen-isotope record of fluid-rock interactions in the Skiddaw Aureole and granite, English Lake District</dc:title>
<dc:authors>Bebout, G.E.; Cooper, D.C.; Bradley, A.D.; Sadofsky, S.J.</dc:authors>
<dc:pubDate>1999-10-01</dc:pubDate>
<dc:researchOrg>Lehigh Univ., Bethlehem, PA (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20000951</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; ROCK-FLUID INTERACTIONS; UNITED KINGDOM; GEOLOGIC FORMATIONS; DEVOLATILIZATION; RESERVOIR FLUIDS; NITROGEN ISOTOPES; MINERALOGY</dc:subject>
</record>
 
 
<record rownumber="33">
<dc:ostiId>20006272</dc:ostiId>
<dc:identifier>20006272</dc:identifier>
<dc:title>Dynamics of the Galapagos hotspot from helium isotope geochemistry</dc:title>
<dc:authors>Kurz, M.D.; Geist, D.</dc:authors>
<dc:pubDate>1999-12-01</dc:pubDate>
<dc:researchOrg>Woods Hole Oceanographic Institution, MA (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20006272</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; VOLCANOES; HOT SPOTS; GEOCHEMISTRY; ISOTOPE RATIO; LAVA; ISOTOPE DATING; ISLANDS; GEOLOGIC MODELS</dc:subject>
</record>
 
 
<record rownumber="34">
<dc:ostiId>20017444</dc:ostiId>
<dc:identifier>20017444</dc:identifier>
<dc:title>Dissolved and particulate Fe in a hydrothermal plume at 9{degree}45 minutes N, East Pacific Rise: Slow Fe (II) oxidation kinetics in Pacific plumes</dc:title>
<dc:authors>Field, M.P.; Sherrell, R.M.</dc:authors>
<dc:pubDate>2000-02-01</dc:pubDate>
<dc:researchOrg>Rutgers Univ., New Brunswick, NJ (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20017444</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; 54 ENVIRONMENTAL SCIENCES; HYDROTHERMAL SYSTEMS; PACIFIC OCEAN; IRON; SOLUBILITY; OXIDATION; REDOX REACTIONS; OCEANIC CIRCULATION; BIOGEOCHEMISTRY</dc:subject>
</record>
 
 
<record rownumber="35">
<dc:ostiId>20020878</dc:ostiId>
<dc:identifier>20020878</dc:identifier>
<dc:title>Neodymium isotopic study of rare earth element sources and mobility in hydrothermal Fe oxide (Fe-P-REE) systems</dc:title>
<dc:authors>Gleason, J.D.; Marikos, M.A.; Barton, M.D.; Johnson, D.A.</dc:authors>
<dc:pubDate>2000-03-01</dc:pubDate>
<dc:researchOrg>Univ. of Arizona, Tucson, AZ (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20020878</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; 58 GEOSCIENCES; HYDROTHERMAL SYSTEMS; NEODYMIUM ISOTOPES; ISOTOPE RATIO; ENVIRONMENTAL TRANSPORT; RARE EARTHS; ORIGIN</dc:subject>
</record>
 
 
<record rownumber="36">
<dc:ostiId>20020886</dc:ostiId>
<dc:identifier>20020886</dc:identifier>
<dc:title>Surface speciation of calcite observed in situ by high-resolution X-ray reflectivity</dc:title>
<dc:authors>Fenter, P.; Geissbuehler, P.; DiMasi, E.; Srajer, G.; Sorensen, L.B.; Sturchio, N.C.</dc:authors>
<dc:pubDate>2000-04-01</dc:pubDate>
<dc:sponsorOrg>US Department of Energy</dc:sponsorOrg>
<dc:researchOrg>Argonne National Lab., IL (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20020886</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; CALCITE; WATER; ROCK-FLUID INTERACTIONS; SURFACE PROPERTIES; X-RAY DIFFRACTION; DISSOLUTION; CRYSTAL GROWTH; SORPTION</dc:subject>
</record>
 
 
<record rownumber="37">
<dc:ostiId>20972060</dc:ostiId>
<dc:identifier>20972060</dc:identifier>
<dc:title>Strategic planning at the national level: Evaluating and ranking energy projects by environmental impact</dc:title>
<dc:authors>Thorhallsdottir, Thora Ellen [Institute of Biology, Department of Biology, Askja Natural Sciences Building, Sturlugata 7, 104 Reykjavik (Iceland)]. E-mail: theth@hi.is</dc:authors>
<dc:pubDate>2007-08-15</dc:pubDate>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20972060</dc:citation>
<dc:subject>29 ENERGY PLANNING, POLICY AND ECONOMY; ECOSYSTEMS; ENVIRONMENT; ENVIRONMENTAL IMPACTS; GEOTHERMAL ENERGY; HABITAT; HYDROELECTRIC POWER; HYDROLOGY</dc:subject>
</record>
 
 
<record rownumber="38">
<dc:ostiId>21064305</dc:ostiId>
<dc:identifier>21064305</dc:identifier>
<dc:title>Natural Gas Hydrates in the Offshore Beaufort-Mackenzie Basin-Study of a Feasible Energy Source II</dc:title>
<dc:authors>Majorowicz, J. A., E-mail: majorowi@freenet.edmonton.ab.ca; Hannigan, P. K., E-mail: phanniga@nrcan.gc.ca</dc:authors>
<dc:pubDate>2000-09-15</dc:pubDate>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=21064305</dc:citation>
<dc:subject>58 GEOSCIENCES; CROSS SECTIONS; GAS HYDRATES; GEOTHERMAL GRADIENTS; HYDROCARBONS; ICE; INDICATORS; ISOTHERMS; MAPS; NATURAL GAS; PERMAFROST</dc:subject>
</record>
 
 
<record rownumber="39">
<dc:ostiId>21072449</dc:ostiId>
<dc:identifier>21072449</dc:identifier>
<dc:title>Means of improving the operating efficiency of air condensers at the Verkhne-Mutnovskaya Geothermal Power Plant in Kamchatka</dc:title>
<dc:authors>Parshin, B. E. [JSC &apos;Geoterm&apos; (Russian Federation)]; Muratov, P. V.; Pashkevich, R. I. [Russian Academy of Sciences, Scientific-Research Geotechnical Center, Far East Branch (Russian Federation)]</dc:authors>
<dc:pubDate>2007-07-15</dc:pubDate>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=21072449</dc:citation>
<dc:subject>42 ENGINEERING; AIR; BLOWERS; EFFICIENCY; GEOTHERMAL POWER PLANTS; HEAT; INSTALLATION; KAMCHATKA; OPERATION; PAYBACK PERIOD; PERFORMANCE</dc:subject>
</record>
 
 
<record rownumber="40">
<dc:ostiId>21072582</dc:ostiId>
<dc:identifier>21072582</dc:identifier>
<dc:title>Process Control System of the Mutnovskaya Geothermal Power Plant</dc:title>
<dc:authors>Idzon, O. M.; Ivanov, V. V.; Ilyushin, V. V.; Nikol&apos;skii, A. I. [Interavtomatika Company, VO Tekhnopromeksport Federal State Unitary Enterprise, Nauka Company (Russian Federation)]</dc:authors>
<dc:pubDate>2004-01-15</dc:pubDate>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=21072582</dc:citation>
<dc:subject>42 ENGINEERING; ALGORITHMS; AUTOMATION; COMPUTER CODES; DIAGRAMS; ENGINEERING; GEOTHERMAL POWER PLANTS; HEAT; HEAT FLUX; OPERATION; PROCESS CONTROL; TURBINES; VALVES</dc:subject>
</record>
 
 
<record rownumber="41">
<dc:ostiId>21152450</dc:ostiId>
<dc:identifier>21152450</dc:identifier>
<dc:title>Natural Radionuclide Activity Concentrations In Spas Of Argentina</dc:title>
<dc:authors>Gnoni, G.; Czerniczyniec, M.; Canoba, A.; Palacios, M. [Autoridad Regulatoria Nuclear, Av. Del Libertador 8250, Ciudad de Bs. As. (1429) (Argentina)]</dc:authors>
<dc:pubDate>2008-08-07</dc:pubDate>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=21152450</dc:citation>
<dc:subject>54 ENVIRONMENTAL SCIENCES; ARGENTINA; GEOTHERMAL FLUIDS; NATURAL RADIOACTIVITY; PERSONNEL MONITORING; PUBLIC HEALTH; RADIATION DOSES; RADON 220; RADON 222; RECREATIONAL AREAS</dc:subject>
</record>
 
 
<record rownumber="42">
<dc:ostiId>20085637</dc:ostiId>
<dc:identifier>20085637</dc:identifier>
<dc:title>A transient two-dimensional finite volume model for the simulation of vertical U-tube ground heat exchangers</dc:title>
<dc:authors>Yavuzturk, C.; Spitler, J.D.; Rees, S.J.</dc:authors>
<dc:pubDate>1999-07-01</dc:pubDate>
<dc:sponsorOrg>US Department of Energy</dc:sponsorOrg>
<dc:researchOrg>Oklahoma State Univ., Stillwater, OK (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2011-03-24</dc:dateEntry>
<dc:resourceType>Conference</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20085637</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; GROUND SOURCE HEAT PUMPS; MATHEMATICAL MODELS; COMPUTERIZED SIMULATION; DESIGN; ENERGY ANALYSIS; PERFORMANCE; HEAT TRANSFER</dc:subject>
</record>
 
 
<record rownumber="43">
<dc:ostiId>20085638</dc:ostiId>
<dc:identifier>20085638</dc:identifier>
<dc:title>A short time step response factor model for vertical ground loop heat exchangers</dc:title>
<dc:authors>Yavuzturk, C.; Spitler, J.D.</dc:authors>
<dc:pubDate>1999-07-01</dc:pubDate>
<dc:sponsorOrg>US Department of Energy</dc:sponsorOrg>
<dc:researchOrg>Oklahoma State Univ., Stillwater, OK (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2011-03-24</dc:dateEntry>
<dc:resourceType>Conference</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20085638</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; GROUND SOURCE HEAT PUMPS; MATHEMATICAL MODELS; HEAT EXCHANGERS; DESIGN; ENERGY ANALYSIS; RESPONSE FUNCTIONS; ENERGY CONSUMPTION; POWER DEMAND</dc:subject>
</record>
 
 
<record rownumber="44">
<dc:ostiId>20085710</dc:ostiId>
<dc:identifier>20085710</dc:identifier>
<dc:title>Non-dimensional pumping power curves for water loop heat pump systems</dc:title>
<dc:authors>Bernier, M.; Lemire, N.</dc:authors>
<dc:pubDate>1999-07-01</dc:pubDate>
<dc:sponsorOrg>Natural Sciences and Engineering Research Council of Canada</dc:sponsorOrg>
<dc:researchOrg>Cole Polytechnique de Montreal, Quebec (CA)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2011-03-24</dc:dateEntry>
<dc:resourceType>Conference</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20085710</dc:citation>
<dc:subject>32 ENERGY CONSERVATION, CONSUMPTION, AND UTILIZATION; 15 GEOTHERMAL ENERGY; WATER SOURCE HEAT PUMPS; PUMPS; POWER DEMAND; OPERATION; DESIGN; CALCULATION METHODS</dc:subject>
</record>
 
 
<record rownumber="45">
<dc:ostiId>20104797</dc:ostiId>
<dc:identifier>20104797</dc:identifier>
<dc:title>Thermal conductivity of cementitious grouts and impact on heat exchanger length design for ground source heat pumps</dc:title>
<dc:authors>Allan, M.L.; Kavanaugh, S.P.</dc:authors>
<dc:pubDate>2000-07-01</dc:pubDate>
<dc:researchOrg>Brookhaven National Lab., Upton, NY (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2011-03-24</dc:dateEntry>
<dc:resourceType>Conference</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20104797</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; GROUND SOURCE HEAT PUMPS; DESIGN; HEAT EXCHANGERS; LENGTH; SEALING MATERIALS; THERMAL CONDUCTIVITY; PERFORMANCE; BACKFILLING; GROUTING; FILLERS; BOREHOLES</dc:subject>
</record>
 
 
<record rownumber="46">
<dc:ostiId>20104800</dc:ostiId>
<dc:identifier>20104800</dc:identifier>
<dc:title>Development of an in-situ system and analysis procedure for measuring ground thermal properties</dc:title>
<dc:authors>Austin, W.A. III; Yavuzturk, C.; Spitler, J.D.</dc:authors>
<dc:pubDate>2000-07-01</dc:pubDate>
<dc:sponsorOrg>US Department of Energy</dc:sponsorOrg>
<dc:researchOrg>EMC Engineers, Denver, CO (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2011-03-24</dc:dateEntry>
<dc:resourceType>Conference</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20104800</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; SOILS; RESERVOIR ROCK; THERMAL CONDUCTIVITY; GROUND SOURCE HEAT PUMPS; DESIGN; COMMERCIAL BUILDINGS; MEASURING METHODS; MEASURING INSTRUMENTS</dc:subject>
</record>
 
 
<record rownumber="47">
<dc:ostiId>20104802</dc:ostiId>
<dc:identifier>20104802</dc:identifier>
<dc:title>Update on maintenance and service costs of commercial building ground-source heat pump systems</dc:title>
<dc:authors>Cane, D.; Garnet, J.M.</dc:authors>
<dc:pubDate>2000-07-01</dc:pubDate>
<dc:researchOrg>Caneta Research Inc., Mississauga, Ontario (CA)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2011-03-24</dc:dateEntry>
<dc:resourceType>Conference</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20104802</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; 32 ENERGY CONSERVATION, CONSUMPTION, AND UTILIZATION; COMMERCIAL BUILDINGS; GROUND SOURCE HEAT PUMPS; MAINTENANCE; OPERATING COST; SPACE HVAC SYSTEMS</dc:subject>
</record>
 
 
<record rownumber="48">
<dc:ostiId>20104804</dc:ostiId>
<dc:identifier>20104804</dc:identifier>
<dc:title>The importance of grouting to enhance the performance of earth energy systems</dc:title>
<dc:authors>Lenarduzzi, F.J.; Cragg, C.B.H.; Radhakrishna, H.S.</dc:authors>
<dc:pubDate>2000-07-01</dc:pubDate>
<dc:researchOrg>Ontario Power Technologies, Toronto, Ontario (CA)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2011-03-24</dc:dateEntry>
<dc:resourceType>Conference</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20104804</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; GROUND SOURCE HEAT PUMPS; PERFORMANCE; GROUTING; BOREHOLES; BACKFILLING; FREEZING; THAWING; STRATA MOVEMENT; PIPES; DAMAGE</dc:subject>
</record>
 
 
<record rownumber="49">
<dc:ostiId>20104840</dc:ostiId>
<dc:identifier>20104840</dc:identifier>
<dc:title>A comparison of vertical ground heat exchanger design software for commercial applications</dc:title>
<dc:authors>Shonder, J.A.; Baxter, V.D.; Hughes, P.J.; Thornton, J.W.</dc:authors>
<dc:pubDate>2000-07-01</dc:pubDate>
<dc:researchOrg>Oak Ridge National Lab., TN (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2011-03-24</dc:dateEntry>
<dc:resourceType>Conference</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20104840</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; GROUND SOURCE HEAT PUMPS; DESIGN; COMPARATIVE EVALUATIONS; HEAT EXCHANGERS; MATHEMATICAL MODELS; SCHOOL BUILDINGS; COMPUTERIZED SIMULATION</dc:subject>
</record>
 
 
<record rownumber="50">
<dc:ostiId>20104841</dc:ostiId>
<dc:identifier>20104841</dc:identifier>
<dc:title>Field test of a new method for determining soil formation thermal conductivity and borehole resistance</dc:title>
<dc:authors>Shonder, J.A.; Beck, J.V.</dc:authors>
<dc:pubDate>2000-07-01</dc:pubDate>
<dc:researchOrg>Oak Ridge National Lab., TN (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2011-03-24</dc:dateEntry>
<dc:resourceType>Conference</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20104841</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; SOILS; RESERVOIR ROCK; THERMAL CONDUCTIVITY; MEASURING METHODS; FIELD TESTS; NEBRASKA; GROUND SOURCE HEAT PUMPS; BOREHOLES; SEALING MATERIALS</dc:subject>
</record>
 
 
<record rownumber="51">
<dc:ostiId>20000932</dc:ostiId>
<dc:identifier>20000932</dc:identifier>
<dc:title>Rare earth element fractionation and concentration variations along a groundwater flow path within a shallow, basin-fill aquifer, southern Nevada, USA</dc:title>
<dc:authors>Johannesson, K.H.; Farnham, I.M.; Guo, C.; Stetzenbach, K.J.</dc:authors>
<dc:pubDate>1999-09-01</dc:pubDate>
<dc:sponsorOrg>US Department of Energy</dc:sponsorOrg>
<dc:researchOrg>Old Dominion Univ., Norfolk, VA (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20000932</dc:citation>
<dc:subject>54 ENVIRONMENTAL SCIENCES; 05 NUCLEAR FUELS; NEVADA; AQUIFERS; GROUND WATER; GEOCHEMISTRY; RARE EARTHS; CONCENTRATION RATIO; LIQUID FLOW; GEOTHERMAL FLUIDS; HOT SPRINGS; MATHEMATICAL MODELS</dc:subject>
</record>
 
 
<record rownumber="52">
<dc:ostiId>20005641</dc:ostiId>
<dc:identifier>20005641</dc:identifier>
<dc:title>Onset of convection in a fluid saturated porous layer overlying a solid layer which is heated by constant flux</dc:title>
<dc:authors>Wang, C.Y.</dc:authors>
<dc:pubDate>1999-11-01</dc:pubDate>
<dc:researchOrg>Michigan State Univ., East Lansing, MI (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20005641</dc:citation>
<dc:subject>42 ENGINEERING; 32 ENERGY CONSERVATION, CONSUMPTION, AND UTILIZATION; 15 GEOTHERMAL ENERGY; POROUS MATERIALS; HYDROTHERMAL SYSTEMS; THERMAL INSULATION; HEATING; NATURAL CONVECTION; LAYERS; SATURATION</dc:subject>
</record>
 
 
<record rownumber="53">
<dc:ostiId>20006264</dc:ostiId>
<dc:identifier>20006264</dc:identifier>
<dc:title>The dissolution kinetics of quartz in aqueous mixed cation solutions</dc:title>
<dc:authors>Dove, P.M.</dc:authors>
<dc:pubDate>1999-11-01</dc:pubDate>
<dc:researchOrg>Georgia Inst. of Tech., Atlanta, GA (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20006264</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; 54 ENVIRONMENTAL SCIENCES; QUARTZ; DISSOLUTION; MAGNESIUM CHLORIDES; CALCIUM CHLORIDES; BARIUM CHLORIDES; SODIUM CHLORIDES; CATALYTIC EFFECTS; ACTIVATION ENERGY; MATHEMATICAL MODELS</dc:subject>
</record>
 
 
<record rownumber="54">
<dc:ostiId>20020874</dc:ostiId>
<dc:identifier>20020874</dc:identifier>
<dc:title>Isotopic exchange in mineral-fluid systems. 4. The crystal chemical controls on oxygen isotope exchange rates in carbonate-H{sub 2}O and layer silicate-H{sub 2}O systems</dc:title>
<dc:authors>Cole, D.R.</dc:authors>
<dc:pubDate>2000-03-01</dc:pubDate>
<dc:sponsorOrg>US Department of Energy</dc:sponsorOrg>
<dc:researchOrg>Oak Ridge National Lab., TN (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20020874</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; CARBONATE MINERALS; SILICATE MINERALS; ISOTOPIC EXCHANGE; ROCK-FLUID INTERACTIONS; WATER; DISSOLUTION; PRECIPITATION; OXYGEN ISOTOPES; BARIUM CARBONATES; CALCIUM CARBONATES; STRONTIUM CARBONATES; CHLORITE MINERALS; BIOTITE; MUSCOVITE; EXPERIMENTAL DATA</dc:subject>
</record>
 
 
<record rownumber="55">
<dc:ostiId>20020890</dc:ostiId>
<dc:identifier>20020890</dc:identifier>
<dc:title>Diffusion of C and O in calcite at 100 MPa</dc:title>
<dc:authors>Labotka, T.C.; Cole, D.R.; Riciputi, L.R.</dc:authors>
<dc:pubDate>2000-04-01</dc:pubDate>
<dc:sponsorOrg>US Department of Energy</dc:sponsorOrg>
<dc:researchOrg>Univ. of Tennessee, Knoxville, TN (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20020890</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; 58 GEOSCIENCES; CALCITE; PERMEABILITY; CARBON; OXYGEN; DIFFUSION; EXPERIMENTAL DATA; PRESSURE DEPENDENCE; ACTIVATION ENERGY; ISOTOPIC EXCHANGE; ROCK-FLUID INTERACTIONS; COOLING</dc:subject>
</record>
 
 
<record rownumber="56">
<dc:ostiId>20919392</dc:ostiId>
<dc:identifier>20919392</dc:identifier>
<dc:title>An experimental study on the thermal performance of ground heat exchanger</dc:title>
<dc:authors>Lim, Kyoungbin; Lee, Sanghoon [Department of Mechanical Engineering, Hanbat University, Daejon (Korea)]; Lee, Changhee [Department of Mechanical Engineering, Hanyang University, 1271 Sa1 Ansan, Kyungki-do 425791 (Korea)]</dc:authors>
<dc:pubDate>2007-08-15</dc:pubDate>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20919392</dc:citation>
<dc:subject>42 ENGINEERING; 15 GEOTHERMAL ENERGY; 14 SOLAR ENERGY; THERMAL CONDUCTIVITY; HEAT EXCHANGERS; GROUND WATER; NATURAL CONVECTION; BOREHOLES; DESIGN; PERFORMANCE; EVALUATION; GROUTING; THERMAL EFFICIENCY; SOILS; GROUND SOURCE HEAT PUMPS</dc:subject>
</record>
 
 
<record rownumber="57">
<dc:ostiId>20979563</dc:ostiId>
<dc:identifier>20979563</dc:identifier>
<dc:title>Energy Profit Ratio Compared</dc:title>
<dc:authors>Amano, Osamu [2-11-1, Iwado Kita, Komae-shi, Tokyo 201-8511 (Japan)]</dc:authors>
<dc:pubDate>2007-07-01</dc:pubDate>
<dc:researchOrg>American Nuclear Society, 555 North Kensington Avenue, La Grange Park, IL 60526 (United States)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Conference</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20979563</dc:citation>
<dc:subject>29 ENERGY PLANNING, POLICY AND ECONOMY; AVAILABILITY; ELECTRIC POWER; ENERGY ANALYSIS; ENERGY DEMAND; ENERGY SUPPLIES; FORECASTING; GEOTHERMAL POWER PLANTS; HYDROELECTRIC POWER PLANTS; NUCLEAR POWER PLANTS; SUPPLY AND DEMAND</dc:subject>
</record>
 
 
<record rownumber="58">
<dc:ostiId>21004976</dc:ostiId>
<dc:identifier>21004976</dc:identifier>
<dc:title>Coal reservoir saturation: Impact of temperature and pressure</dc:title>
<dc:authors>Bustin, A.M.M.; Bustin, R.M. [University of British Columbia, Vancouver, BC (Canada). Dept. of Earth &amp; Ocean Science]</dc:authors>
<dc:pubDate>2008-01-15</dc:pubDate>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=21004976</dc:citation>
<dc:subject>01 COAL, LIGNITE, AND PEAT; METHANE; ADSORPTION ISOTHERMS; COAL; SORPTION; GEOLOGIC HISTORY; TECTONICS; PRESSURE DEPENDENCE; TEMPERATURE DEPENDENCE; GAS SATURATION; SORPTIVE PROPERTIES; DESORPTION; GEOTHERMAL GRADIENTS</dc:subject>
</record>
 
 
<record rownumber="59">
<dc:ostiId>21064185</dc:ostiId>
<dc:identifier>21064185</dc:identifier>
<dc:title>Unconventional Energy Resources and Geospatial Information: 2006 Review</dc:title>
<dc:pubDate>2007-09-15</dc:pubDate>
<dc:researchOrg>American Association of Petroleum Geologists, Energy Minerals Division (United States)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=21064185</dc:citation>
<dc:subject>29 ENERGY PLANNING, POLICY AND ECONOMY; CARBONATE ROCKS; COAL; COAL DEPOSITS; ECONOMIC POLICY; ECONOMICS; ENERGY POLICY; GAS HYDRATES; GEOTHERMAL RESOURCES; METHANE; NATURAL GAS; OIL SANDS; PETROLEUM; SANDSTONES; SHALES; URANIUM</dc:subject>
</record>
 
 
<record rownumber="60">
<dc:ostiId>21238853</dc:ostiId>
<dc:identifier>21238853</dc:identifier>
<dc:title>Unconventional Energy Resources: 2007-2008 Review</dc:title>
<dc:pubDate>2009-06-15</dc:pubDate>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=21238853</dc:citation>
<dc:subject>29 ENERGY PLANNING, POLICY AND ECONOMY; CARBONATE ROCKS; ENERGY POLICY; EXPLORATION; GAS HYDRATES; GEOTHERMAL RESOURCES; MINERALS; NATURAL GAS; OIL SANDS; OILS; PETROLEUM; SANDSTONES; URANIUM</dc:subject>
</record>
 
 
<record rownumber="61">
<dc:ostiId>20014442</dc:ostiId>
<dc:identifier>20014442</dc:identifier>
<dc:title>1999 ASHRAE handbook -- HVAC applications</dc:title>
<dc:pubDate>1999-07-01</dc:pubDate>
<dc:language>English</dc:language>
<dc:dateEntry>2011-03-24</dc:dateEntry>
<dc:resourceType>Book</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20014442</dc:citation>
<dc:subject>32 ENERGY CONSERVATION, CONSUMPTION, AND UTILIZATION; SPACE HVAC SYSTEMS; RESIDENTIAL BUILDINGS; INDUSTRIAL PLANTS; GEOTHERMAL HEATING SYSTEMS; SOLAR SPACE HEATING; ENERGY MANAGEMENT; DESIGN; CONTROL SYSTEMS</dc:subject>
</record>
 
 
<record rownumber="62">
<dc:ostiId>20085705</dc:ostiId>
<dc:identifier>20085705</dc:identifier>
<dc:title>A new comparison of vertical ground heat exchanger design methods for residential applications</dc:title>
<dc:authors>Shonder, J.A.; Baxter, V.; Thornton, J.; Hughes, P.</dc:authors>
<dc:pubDate>1999-07-01</dc:pubDate>
<dc:researchOrg>Oak Ridge National Lab., TN (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2011-03-24</dc:dateEntry>
<dc:resourceType>Conference</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20085705</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; 32 ENERGY CONSERVATION, CONSUMPTION, AND UTILIZATION; GROUND SOURCE HEAT PUMPS; COMPUTER-AIDED DESIGN; RESIDENTIAL BUILDINGS; COMPARATIVE EVALUATIONS; COMPUTERIZED SIMULATION</dc:subject>
</record>
 
 
<record rownumber="63">
<dc:ostiId>20085706</dc:ostiId>
<dc:identifier>20085706</dc:identifier>
<dc:title>Implications of measured commercial building loads on geothermal system sizing</dc:title>
<dc:authors>Henderson, H.I. Jr.</dc:authors>
<dc:pubDate>1999-07-01</dc:pubDate>
<dc:researchOrg>CDH Energy Corp., Cazenovia, NY (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2011-03-24</dc:dateEntry>
<dc:resourceType>Conference</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20085706</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; 32 ENERGY CONSERVATION, CONSUMPTION, AND UTILIZATION; GROUND SOURCE HEAT PUMPS; COOLING LOAD; HEATING LOAD; DESIGN; SIZE; HEAT EXCHANGERS; PEAK LOAD; OFFICE BUILDINGS; HOTELS; SCHOOL BUILDINGS</dc:subject>
</record>
 
 
<record rownumber="64">
<dc:ostiId>20085707</dc:ostiId>
<dc:identifier>20085707</dc:identifier>
<dc:title>Benchmark for performance: Geothermal applications in Lincoln public schools</dc:title>
<dc:authors>Shonder, J.A.; Martin, M.A.; Sharp, T.R.; Durfee, D.J.; Hughes, P.J.</dc:authors>
<dc:pubDate>1999-07-01</dc:pubDate>
<dc:researchOrg>Oak Ridge National Lab., TN (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2011-03-24</dc:dateEntry>
<dc:resourceType>Conference</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20085707</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; 32 ENERGY CONSERVATION, CONSUMPTION, AND UTILIZATION; SCHOOL BUILDINGS; GROUND SOURCE HEAT PUMPS; NEBRASKA; PERFORMANCE; ENERGY EFFICIENCY; ENERGY CONSUMPTION; NATURAL GAS</dc:subject>
</record>
 
 
<record rownumber="65">
<dc:ostiId>20085708</dc:ostiId>
<dc:identifier>20085708</dc:identifier>
<dc:title>Comparing maintenance costs of geothermal heat pump systems with other HVAC systems in Lincoln public schools: Repair, service, and corrective actions</dc:title>
<dc:authors>Martin, M.A.; Durfee, D.J.; Hughes, P.J.</dc:authors>
<dc:pubDate>1999-07-01</dc:pubDate>
<dc:researchOrg>Oak Ridge National Lab., TN (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2011-03-24</dc:dateEntry>
<dc:resourceType>Conference</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20085708</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; 32 ENERGY CONSERVATION, CONSUMPTION, AND UTILIZATION; 03 NATURAL GAS; SCHOOL BUILDINGS; NEBRASKA; GROUND SOURCE HEAT PUMPS; SPACE HVAC SYSTEMS; MAINTENANCE; COST; COMPARATIVE EVALUATIONS; REPAIR; GAS FURNACES; ECONOMIC ANALYSIS; COMPILED DATA</dc:subject>
</record>
 
 
<record rownumber="66">
<dc:ostiId>20085709</dc:ostiId>
<dc:identifier>20085709</dc:identifier>
<dc:title>Energy use of ventilation air conditioning options for ground-source heat pump systems</dc:title>
<dc:authors>Kavanaugh, S.</dc:authors>
<dc:pubDate>1999-07-01</dc:pubDate>
<dc:researchOrg>Univ. of Alabama, Tuscaloosa, AL (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2011-03-24</dc:dateEntry>
<dc:resourceType>Conference</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20085709</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; 32 ENERGY CONSERVATION, CONSUMPTION, AND UTILIZATION; GROUND SOURCE HEAT PUMPS; VENTILATION SYSTEMS; ENERGY CONSUMPTION; AIR CONDITIONING; OFFICE BUILDINGS; ALABAMA; HEAT RECOVERY EQUIPMENT; WATER SOURCE HEAT PUMPS; COMPARATIVE EVALUATIONS</dc:subject>
</record>
 
 
<record rownumber="67">
<dc:ostiId>20085711</dc:ostiId>
<dc:identifier>20085711</dc:identifier>
<dc:title>A preliminary evaluation of the DOE-2.1E ground vertical well model using Maxey School measured data</dc:title>
<dc:authors>McLain, H.A.; Martin, M.A.</dc:authors>
<dc:pubDate>1999-07-01</dc:pubDate>
<dc:researchOrg>Oak Ridge National Lab., TN (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2011-03-24</dc:dateEntry>
<dc:resourceType>Conference</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20085711</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; 32 ENERGY CONSERVATION, CONSUMPTION, AND UTILIZATION; SCHOOL BUILDINGS; GROUND SOURCE HEAT PUMPS; COMPUTERIZED SIMULATION; D CODES; NEBRASKA; VALIDATION; RECOMMENDATIONS; INFORMATION NEEDS</dc:subject>
</record>
 
 
<record rownumber="68">
<dc:ostiId>20104801</dc:ostiId>
<dc:identifier>20104801</dc:identifier>
<dc:title>A preliminary assessment of the effects of groundwater flow on closed-loop ground source heat pump systems</dc:title>
<dc:authors>Chiasson, A.D.; Rees, S.J.; Spitler, J.D.</dc:authors>
<dc:pubDate>2000-07-01</dc:pubDate>
<dc:sponsorOrg>US Department of Energy</dc:sponsorOrg>
<dc:researchOrg>Oklahoma State Univ., Stillwater, OK (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2011-03-24</dc:dateEntry>
<dc:resourceType>Conference</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20104801</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; GROUND SOURCE HEAT PUMPS; PERFORMANCE; GROUND WATER; LIQUID FLOW; CLOSED-CYCLE SYSTEMS; HEAT TRANSFER; HYDRAULIC CONDUCTIVITY; RESERVOIR ROCK; DESIGN; COMPUTERIZED SIMULATION</dc:subject>
</record>
 
 
<record rownumber="69">
<dc:ostiId>20104803</dc:ostiId>
<dc:identifier>20104803</dc:identifier>
<dc:title>Comparing maintenance costs of geothermal heat pump systems with other HVAC systems: Preventive maintenance actions and total maintenance costs</dc:title>
<dc:authors>Martin, M.A.; Madgett, M.G.; Hughes, P.J.</dc:authors>
<dc:pubDate>2000-07-01</dc:pubDate>
<dc:researchOrg>Oak Ridge National Lab., TN (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2011-03-24</dc:dateEntry>
<dc:resourceType>Conference</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20104803</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; 32 ENERGY CONSERVATION, CONSUMPTION, AND UTILIZATION; SCHOOL BUILDINGS; SPACE HVAC SYSTEMS; MAINTENANCE; OPERATING COST; NEBRASKA; GROUND SOURCE HEAT PUMPS; GAS APPLIANCES; COMPILED DATA</dc:subject>
</record>
 
 
<record rownumber="70">
<dc:ostiId>20104842</dc:ostiId>
<dc:identifier>20104842</dc:identifier>
<dc:title>Field tests for ground thermal properties -- Methods and impact on ground-source heat pump design</dc:title>
<dc:authors>Kavanaugh, S.P.</dc:authors>
<dc:pubDate>2000-07-01</dc:pubDate>
<dc:researchOrg>Univ. of Alabama, Tuscaloosa, AL (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2011-03-24</dc:dateEntry>
<dc:resourceType>Conference</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20104842</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY; 32 ENERGY CONSERVATION, CONSUMPTION, AND UTILIZATION; GROUND SOURCE HEAT PUMPS; DESIGN; SOILS; RESERVOIR ROCK; THERMAL CONDUCTIVITY; FIELD TESTS; OFFICE BUILDINGS</dc:subject>
</record>
 
 
<record rownumber="71">
<dc:ostiId>21511553</dc:ostiId>
<dc:identifier>21511553</dc:identifier>
<dc:title>The Study of Electromagnetic Field Response Using Very Low Frequency Methods in Geothermal Area, Sabang</dc:title>
<dc:authors>Isa, M. [Departement of Physics Syiah Kuala University Banda Aceh, 23111 (Indonesia); School of Physics, Universiti Sains Malaysia 11800, Penang (Malaysia)]; Lim, H. S.; Jafri, M. Z. Mat [School of Physics, Universiti Sains Malaysia 11800, Penang (Malaysia)]</dc:authors>
<dc:pubDate>2011-03-30</dc:pubDate>
<dc:language>English</dc:language>
<dc:dateEntry>2011-12-12</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=21511553</dc:citation>
<dc:subject>71 CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS; 58 GEOSCIENCES; COMPARATIVE EVALUATIONS; DEPTH; DIFFERENTIAL EQUATIONS; ELECTRIC FIELDS; ELECTROMAGNETIC FIELDS; EQUIPMENT; GEOTHERMAL FIELDS; MAGNETIC FIELDS; METERS; RESONANCE; SITE CHARACTERIZATION</dc:subject>
<dc:subjectRelated>DIMENSIONS; EQUATIONS; EVALUATION; MEASURING INSTRUMENTS</dc:subjectRelated>
</record>
 
 
<record rownumber="72">
<dc:ostiId>20885817</dc:ostiId>
<dc:identifier>20885817</dc:identifier>
<dc:title>Projects of the year</dc:title>
<dc:authors>Hansen, T.</dc:authors>
<dc:pubDate>2007-01-15</dc:pubDate>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20885817</dc:citation>
<dc:subject>20 FOSSIL-FUELED POWER PLANTS; 01 COAL, LIGNITE, AND PEAT; 03 NATURAL GAS; 21 SPECIFIC NUCLEAR REACTORS AND ASSOCIATED PLANTS; 15 GEOTHERMAL ENERGY; AWARDS; USA; POWER GENERATION; COAL; FOSSIL-FUEL POWER PLANTS; ARIZONA; NORTH CAROLINA; NITROGEN OXIDES; AIR POLLUTION CONTROL; SULFUR DIOXIDE; UKRAINE; GEOTHERMAL POWER PLANTS; NUCLEAR POWER PLANTS; STEAM GENERATORS; NATURAL GAS; COGENERATION; GAS TURBINES; WASTE PRODUCT UTILIZATION</dc:subject>
</record>
 
 
<record rownumber="73">
<dc:ostiId>20813306</dc:ostiId>
<dc:identifier>20813306</dc:identifier>
<dc:title>World electric power plants database</dc:title>
<dc:pubDate>2006-06-15</dc:pubDate>
<dc:researchOrg>Platts, Washington, DC (United States). UDI Products Group</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2011-03-24</dc:dateEntry>
<dc:resourceType>Miscellaneous</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20813306</dc:citation>
<dc:subject>20 FOSSIL-FUELED POWER PLANTS; 13 HYDRO ENERGY; 14 SOLAR ENERGY; 15 GEOTHERMAL ENERGY; 17 WIND ENERGY; 09 BIOMASS FUELS; 21 SPECIFIC NUCLEAR REACTORS AND ASSOCIATED PLANTS; GLOBAL ASPECTS; SOLAR POWER PLANTS; DIRECTORIES; HYDROELECTRIC POWER PLANTS; DATA BASE MANAGEMENT; GEOTHERMAL POWER PLANTS; FOSSIL-FUEL POWER PLANTS; REFUSE-FUELED POWER PLANTS; CAPACITY; WIND POWER PLANTS; FOSSIL FUELS; WOOD FUELS; BOILERS; NUCLEAR POWER PLANTS; TURBINES; POWER PLANTS; MANUFACTURERS; POWER GENERATION; RENEWABLE ENERGY SOURCES; COMPILED DATA; POLLUTION CONTROL EQUIPMENT</dc:subject>
</record>
 
 
<record rownumber="74">
<dc:ostiId>20740975</dc:ostiId>
<dc:identifier>20740975</dc:identifier>
<dc:title>Energy: a historical perspective and 21st century forecast</dc:title>
<dc:authors>Salvador, Amos [University of Texas, Austin, TX (United States)]</dc:authors>
<dc:pubDate>2005-07-01</dc:pubDate>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Book</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20740975</dc:citation>
<dc:subject>29 ENERGY PLANNING, POLICY AND ECONOMY; ENERGY; ENERGY CONSUMPTION; ENERGY SOURCES; ENERGY SUPPLIES; FORECASTING; POWER GENERATION; COAL; NATURAL GAS; OIL SHALES; NUCLEAR POWER; HYDROELECTRIC POWER; BIOMASS; GEOTHERMAL ENERGY; RENEWABLE ENERGY SOURCES; HYDROGEN; FUEL CELLS</dc:subject>
</record>
 
 
<record rownumber="75">
<dc:ostiId>20800055</dc:ostiId>
<dc:identifier>20800055</dc:identifier>
<dc:title>Contribution of Geophysical Prospecting to Geohazard Evaluation</dc:title>
<dc:authors>Nicolich, Rinaldo [Department of Civil Engineering, University of Trieste, via Valerio 10, I-34127 Trieste (Italy)]</dc:authors>
<dc:pubDate>2006-03-23</dc:pubDate>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20800055</dc:citation>
<dc:subject>75 CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY; EARTHQUAKES; EVALUATION; GEOLOGY; GEOPHYSICS; GEOTHERMAL RESOURCES; HAZARDS; HYDROCARBONS; ITALY; MECHANICAL PROPERTIES; OILS; PHYSICAL PROPERTIES; REFLECTION; RISK ASSESSMENT; SEDIMENTARY BASINS; SEISMIC SOURCES; SEISMIC SURVEYS; SEISMICITY; SEISMOLOGY; UNDERGROUND; ZONES</dc:subject>
</record>
 
 
<record rownumber="76">
<dc:ostiId>21494290</dc:ostiId>
<dc:identifier>21494290</dc:identifier>
<dc:title>Hydrothermal synthesis of compounds in the fresnoite mineral family (Ba{sub 2}TiSi{sub 2}O{sub 8})</dc:title>
<dc:authors>Abbott, Edward E.; Mann, Matthew [Department of Chemistry and Center for Optical Materials Science and Engineering Technologies (COMSET), Clemson University, 485 Hunter Labs, Clemson, SC 29634-0973 (United States)]; Kolis, Joseph W., E-mail: kjoseph@clemson.ed [Department of Chemistry and Center for Optical Materials Science and Engineering Technologies (COMSET), Clemson University, 485 Hunter Labs, Clemson, SC 29634-0973 (United States)]</dc:authors>
<dc:pubDate>2011-05-15</dc:pubDate>
<dc:language>English</dc:language>
<dc:dateEntry>2011-11-07</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=21494290</dc:citation>
<dc:subject>36 MATERIALS SCIENCE; BARIUM HYDROXIDES; CRYSTAL GROWTH; HYDROTHERMAL SYNTHESIS; HYDROTHERMAL SYSTEMS; SILICON OXIDES; TITANIUM OXIDES</dc:subject>
<dc:subjectRelated>ALKALINE EARTH METAL COMPOUNDS; BARIUM COMPOUNDS; CHALCOGENIDES; ENERGY SYSTEMS; GEOTHERMAL SYSTEMS; HYDROGEN COMPOUNDS; HYDROXIDES; OXIDES; OXYGEN COMPOUNDS; SILICON COMPOUNDS; SYNTHESIS; TITANIUM COMPOUNDS; TRANSITION ELEMENT COMPOUNDS</dc:subjectRelated>
</record>
 
 
<record rownumber="77">
<dc:ostiId>20000234</dc:ostiId>
<dc:identifier>20000234</dc:identifier>
<dc:title>Proceedings of the 33. intersociety energy conversion engineering conference</dc:title>
<dc:authors>Anghaie, S. [ed.]</dc:authors>
<dc:pubDate>1998-07-01</dc:pubDate>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Conference</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20000234</dc:citation>
<dc:subject>32 ENERGY CONSERVATION, CONSUMPTION, AND UTILIZATION; 42 ENGINEERING; LEADING ABSTRACT; MEETINGS; SPACECRAFT POWER SUPPLIES; ELECTRIC BATTERIES; PHOTOVOLTAIC POWER SUPPLIES; ELECTRIC-POWERED VEHICLES; POWER TRANSMISSION; STIRLING ENGINES; HEAT PUMPS; MHD GENERATORS; THERMIONICS; FUEL SUBSTITUTION; ENVIRONMENTAL IMPACTS; POWER SYSTEMS; SOLAR ARCHITECTURE; ENERGY SYSTEMS; BUILDINGS; ELECTRIC GENERATORS; WIND TURBINES; HEAT TRANSFER; BIOMASS; GEOTHERMAL ENERGY; COMPUTERIZED SIMULATION</dc:subject>
</record>
 
 
<record rownumber="78">
<dc:ostiId>20885804</dc:ostiId>
<dc:identifier>20885804</dc:identifier>
<dc:title>Investment in generation is heavy, but important needs remain</dc:title>
<dc:authors>Maize, K.</dc:authors>
<dc:pubDate>2007-01-15</dc:pubDate>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20885804</dc:citation>
<dc:subject>29 ENERGY PLANNING, POLICY AND ECONOMY; 20 FOSSIL-FUELED POWER PLANTS; USA; ELECTRIC POWER INDUSTRY; POWER GENERATION; CAPACITY; FORECASTING; COST; FOSSIL FUELS; COAL; PULVERIZED FUELS; NATURAL GAS; NUCLEAR POWER; SECURITY; RENEWABLE ENERGY SOURCES; WIND POWER; LIQUEFIED NATURAL GAS; GEOTHERMAL ENERGY; POLITICAL ASPECTS; US DOE; POWER TRANSMISSION; POWER DISTRIBUTION; CARBON DIOXIDE</dc:subject>
</record>
 
 
<record rownumber="79">
<dc:ostiId>20085596</dc:ostiId>
<dc:identifier>20085596</dc:identifier>
<dc:title>ASHRAE Transactions: Technical and symposium papers presented at the 1999 annual meeting in Seattle, Washington of the American Society of Heating, Refrigerating and Air-Conditioning Engineers, Inc.; Volume 105, Part 2</dc:title>
<dc:authors>Geshwiler, M.; Harrell, D.; Roberson, T. [eds.]</dc:authors>
<dc:pubDate>1999-07-01</dc:pubDate>
<dc:language>English</dc:language>
<dc:dateEntry>2011-03-24</dc:dateEntry>
<dc:resourceType>Conference</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20085596</dc:citation>
<dc:subject>32 ENERGY CONSERVATION, CONSUMPTION, AND UTILIZATION; 15 GEOTHERMAL ENERGY; 25 ENERGY STORAGE; LEADING ABSTRACT; MEETINGS; SPACE HVAC SYSTEMS; VENTILATION SYSTEMS; WINDOWS; INDOOR AIR POLLUTION; REFRIGERANTS; LUBRICANTS; REFRIGERATING MACHINERY; CENTRAL HEATING PLANTS; THERMAL ENERGY STORAGE EQUIPMENT; AIR SAMPLERS; GROUND SOURCE HEAT PUMPS; MATHEMATICAL MODELS; DIAGNOSTIC TECHNIQUES</dc:subject>
</record>
 
 
<record rownumber="80">
<dc:ostiId>20978229</dc:ostiId>
<dc:identifier>20978229</dc:identifier>
<dc:title>Environmentally conscious alternative energy production</dc:title>
<dc:authors>Kutz, M. (ed.) [Myer Kutz Associates, Inc., Delmar, NY (United States)]</dc:authors>
<dc:pubDate>2007-09-15</dc:pubDate>
<dc:language>English</dc:language>
<dc:dateEntry>2011-03-24</dc:dateEntry>
<dc:resourceType>Book</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20978229</dc:citation>
<dc:subject>20 FOSSIL-FUELED POWER PLANTS; 54 ENVIRONMENTAL SCIENCES; 01 COAL, LIGNITE, AND PEAT; POWER GENERATION; COAL; ECONOMIC ANALYSIS; ECONOMICS; ELECTRIC POWER; AIR POLLUTION ABATEMENT; ECONOMIC IMPACT; WASTE HEAT UTILIZATION; ENVIRONMENTAL IMPACTS; SOLAR ENERGY; RENEWABLE ENERGY SOURCES; TECHNOLOGY ASSESSMENT; COMPARATIVE EVALUATIONS; PHOTOVOLTAIC CONVERSION; FUEL CELLS; GEOTHERMAL ENERGY; LEADING ABSTRACT; WIND POWER; COGENERATION; HYDROGEN; HYDROGEN PRODUCTION</dc:subject>
</record>
 
 
<record rownumber="81">
<dc:ostiId>20712287</dc:ostiId>
<dc:identifier>20712287</dc:identifier>
<dc:title>Mechanical engineers&apos; handbook, energy and power. 3rd ed.</dc:title>
<dc:authors>Myer Kutz (ed.)</dc:authors>
<dc:pubDate>2005-12-15</dc:pubDate>
<dc:language>English</dc:language>
<dc:dateEntry>2010-06-03</dc:dateEntry>
<dc:resourceType>Book</dc:resourceType>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=20712287</dc:citation>
<dc:subject>01 COAL, LIGNITE, AND PEAT; 20 FOSSIL-FUELED POWER PLANTS; 21 SPECIFIC NUCLEAR REACTORS AND ASSOCIATED PLANTS; 14 SOLAR ENERGY; 15 GEOTHERMAL ENERGY; 17 WIND ENERGY; 32 ENERGY CONSERVATION, CONSUMPTION, AND UTILIZATION; 42 ENGINEERING; FLUID MECHANICS; THERMODYNAMICS; THERMODYNAMIC PROPERTIES; HEAT TRANSFER; COMBUSTION; FURNACES; COAL; FOSSIL FUELS; ENERGY; ENERGY ANALYSIS; LIGNITE; PEAT; NUCLEAR POWER; FUEL CELLS; WATER POLLUTION CONTROL; STEAM TURBINES; GAS TURBINES; BLOWERS; HEAT EXCHANGERS; AIR POLLUTION CONTROL; POLLUTION CONTROL EQUIPMENT; HEAT PIPES; SOLAR ENERGY; GAS FUELS; REFRIGERATION; INDOOR AIR POLLUTION; LIQUID FUELS; PETROLEUM PRODUCTS; GEOTHERMAL RESOURCES; ENERGY AUDITS; AIR HEATERS; COOLING SYSTEMS; INTERNAL COMBUSTION ENGINES; WIND TURBINES; ELECTRONIC EQUIPMENT</dc:subject>
</record>
 
 
<record rownumber="82">
<dc:ostiId>894529</dc:ostiId>
<dc:identifier>894529</dc:identifier>
<dc:title>Use of Geothermal Energy for Aquaculture Purposes - Phase III</dc:title>
<dc:authors>Johnson, W.C.; Smith, K.C.</dc:authors>
<dc:pubDate>1981-09-01</dc:pubDate>
<dc:sponsorOrg>USDOE</dc:sponsorOrg>
<dc:researchOrg>Geo-Heat Center, Klamath Falls, OR</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2006-11-06</dc:dateEntry>
<dc:resourceType>Technical Report</dc:resourceType>
<dcq:identifier-purl type="application/pdf">http://www.osti.gov/geothermal/servlets/purl/894529-t0csw6/</dcq:identifier-purl>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=894529</dc:citation>
<dc:subjectRelated>Geothermal Legacy</dc:subjectRelated>
</record>
 
 
<record rownumber="83">
<dc:ostiId>894586</dc:ostiId>
<dc:identifier>894586</dc:identifier>
<dc:title>Doublet Tracer Testing in Klamath Falls, Oregon</dc:title>
<dc:authors>Gudmundsson, J.S.; Johnson, S.E.; Horne, R.N.; Jackson, P. B. [Pet. Eng. Dept., Stanford University]; Culver, G.G. [Geo-Heat Center, Oregon Institute of Technology, Klamath Falls, OR]</dc:authors>
<dc:pubDate>0001-01-01</dc:pubDate>
<dc:sponsorOrg>USDOE</dc:sponsorOrg>
<dc:researchOrg>Pet. Eng. Dept., Stanford University; Geo-Heat Center, Oregon Institute of Technology, Klamath Falls, OR</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2006-11-13</dc:dateEntry>
<dc:resourceType>Technical Report</dc:resourceType>
<dcq:identifier-purl type="application/pdf">http://www.osti.gov/geothermal/servlets/purl/894586-4FshTr/</dcq:identifier-purl>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=894586</dc:citation>
<dc:subjectRelated>Geothermal Legacy</dc:subjectRelated>
</record>
 
 
<record rownumber="84">
<dc:ostiId>894589</dc:ostiId>
<dc:identifier>894589</dc:identifier>
<dc:title>Data Acquisition for Low-Temperature Geothermal Well Tests and Long-Term Monitoring</dc:title>
<dc:authors>Lienau, P.J.</dc:authors>
<dc:pubDate>1992-03-01</dc:pubDate>
<dc:sponsorOrg>USDOE</dc:sponsorOrg>
<dc:researchOrg>Geo-Heat Center; Oregon Institute of Technology; Klamath Falls, OR</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2006-11-13</dc:dateEntry>
<dc:resourceType>Technical Report</dc:resourceType>
<dcq:identifier-purl type="application/pdf">http://www.osti.gov/geothermal/servlets/purl/894589-7kLcw4/</dcq:identifier-purl>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=894589</dc:citation>
<dc:subjectRelated>Geothermal Legacy</dc:subjectRelated>
</record>
 
 
<record rownumber="85">
<dc:ostiId>895230</dc:ostiId>
<dc:identifier>895230</dc:identifier>
<dc:title>Regulatory Issues for Direct-Use Geothermal Resource Development in Oregon</dc:title>
<dc:authors>Rafferty, Kevin (ed.)</dc:authors>
<dc:pubDate>0001-01-01</dc:pubDate>
<dc:sponsorOrg>USDOE</dc:sponsorOrg>
<dc:researchOrg>Oregon Water Resources Department (http://www.wrd.state.or.us/index.shtml) and Oregon Department of Environmental Quality (http://www.deq.state.or.us/) websites</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2006-11-20</dc:dateEntry>
<dc:resourceType>Technical Report</dc:resourceType>
<dcq:identifier-purl type="application/pdf">http://www.osti.gov/geothermal/servlets/purl/895230-uucXfQ/</dcq:identifier-purl>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=895230</dc:citation>
<dc:subjectRelated>Geothermal Legacy</dc:subjectRelated>
</record>
 
 
<record rownumber="86">
<dc:ostiId>892001</dc:ostiId>
<dc:identifier>892001</dc:identifier>
<dc:title>Culture of Freshwater Prawns (Macrobrachium Rosenbergii) Using Geothermal Waste Water</dc:title>
<dc:authors>Johnson, William C.</dc:authors>
<dc:pubDate>1978-01-01</dc:pubDate>
<dc:sponsorOrg>USDOE - Office of Energy Efficiency and Renewable Energy (EE) Geothermal Technologies Program</dc:sponsorOrg>
<dc:researchOrg>Geo-Heat Center, Klamath Falls, OR</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2006-10-02</dc:dateEntry>
<dc:resourceType>Technical Report</dc:resourceType>
<dcq:identifier-purl type="application/pdf">http://www.osti.gov/geothermal/servlets/purl/892001-o9i80g/</dcq:identifier-purl>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=892001</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY</dc:subject>
<dc:subjectRelated>Geothermal Legacy</dc:subjectRelated>
</record>
 
 
<record rownumber="87">
<dc:ostiId>892013</dc:ostiId>
<dc:identifier>HI-85-02 No. 3</dc:identifier>
<dc:title>Corrosion in low-temperature geothermal applications</dc:title>
<dc:authors>Knipe, E.C.; Rafferty, K.D.</dc:authors>
<dc:pubDate>1985-01-01</dc:pubDate>
<dc:sponsorOrg>USDOE - Office of Energy Efficiency and Renewable Energy (EE)</dc:sponsorOrg>
<dc:researchOrg>ASHRAE</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2006-10-23</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dcq:identifier-purl type="application/pdf">http://www.osti.gov/geothermal/servlets/purl/892013-Y3Jo6B/</dcq:identifier-purl>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=892013</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY</dc:subject>
<dc:subjectRelated>Geothermal Legacy</dc:subjectRelated>
</record>
 
 
<record rownumber="88">
<dc:ostiId>892014</dc:ostiId>
<dc:identifier>892014</dc:identifier>
<dc:title>Direct Heat Utilization of Geothermal Resources Worldwide 2005</dc:title>
<dc:authors>Lund, John W.</dc:authors>
<dc:pubDate>2000-01-01</dc:pubDate>
<dc:sponsorOrg>USDOE - Office of Energy Efficiency and Renewable Energy (EE) Geothermal Technologies Program</dc:sponsorOrg>
<dc:researchOrg>Geo-Heat Center, Oregon Institute of Technology, Klamath Falls, OR</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2006-10-02</dc:dateEntry>
<dc:resourceType>Technical Report</dc:resourceType>
<dcq:identifier-purl type="application/pdf">http://www.osti.gov/geothermal/servlets/purl/892014-8O4cAc/</dcq:identifier-purl>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=892014</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY</dc:subject>
<dc:subjectRelated>Geothermal Legacy</dc:subjectRelated>
</record>
 
 
<record rownumber="89">
<dc:ostiId>892016</dc:ostiId>
<dc:identifier>892016</dc:identifier>
<dc:title>Geothermal heat pump performance</dc:title>
<dc:authors>Boyd, Tonya L.; Lienau, Paul J.</dc:authors>
<dc:pubDate>1995-01-01</dc:pubDate>
<dc:sponsorOrg>USDOE - Office of Energy Efficiency and Renewable Energy (EE)</dc:sponsorOrg>
<dc:researchOrg>Geo-Heat Center, Oregon Institute of Technology, Klamath Falls, OR</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2006-10-02</dc:dateEntry>
<dc:resourceType>Conference</dc:resourceType>
<dcq:identifier-purl type="application/pdf">http://www.osti.gov/geothermal/servlets/purl/892016-TlIvXn/</dcq:identifier-purl>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=892016</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY</dc:subject>
<dc:subjectRelated>Geothermal Legacy</dc:subjectRelated>
</record>
 
 
<record rownumber="90">
<dc:ostiId>892019</dc:ostiId>
<dc:identifier>892019</dc:identifier>
<dc:title>An Information Survival Kit for the Prospective Geothermal Heat Pump Owner</dc:title>
<dc:authors>Rafferty, Kevin</dc:authors>
<dc:pubDate>2001-02-01</dc:pubDate>
<dc:sponsorOrg>USDOE - Office of Energy Efficiency and Renewable Energy (EE) Geothermal Technologies Program</dc:sponsorOrg>
<dc:researchOrg>Geo-Heat Center, Oregon Institute of Technology, Klamath Falls, OR</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2006-10-02</dc:dateEntry>
<dc:resourceType>Technical Report</dc:resourceType>
<dcq:identifier-purl type="application/pdf">http://www.osti.gov/geothermal/servlets/purl/892019-els5ms/</dcq:identifier-purl>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=892019</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY</dc:subject>
<dc:subjectRelated>Geothermal Legacy</dc:subjectRelated>
</record>
 
 
<record rownumber="91">
<dc:ostiId>892023</dc:ostiId>
<dc:identifier>892023</dc:identifier>
<dc:title>Geothermal District Heating System City of Klamath Falls</dc:title>
<dc:authors>Lienau, Paul J.; Rafferty, Kevin</dc:authors>
<dc:pubDate>1991-12-01</dc:pubDate>
<dc:sponsorOrg>USDOE - Office of Energy Efficiency and Renewable Energy (EE) Geothermal Technologies Program</dc:sponsorOrg>
<dc:researchOrg>Geo-Heat Center</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2006-10-02</dc:dateEntry>
<dc:resourceType>Technical Report</dc:resourceType>
<dcq:identifier-purl type="application/pdf">http://www.osti.gov/geothermal/servlets/purl/892023-8wtDJh/</dcq:identifier-purl>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=892023</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY</dc:subject>
<dc:subjectRelated>Geothermal Legacy</dc:subjectRelated>
</record>
 
 
<record rownumber="92">
<dc:ostiId>892024</dc:ostiId>
<dc:identifier>SA-96-5-1</dc:identifier>
<dc:title>Environmental considerations for geothermal energy as a source for district heating</dc:title>
<dc:authors>Rafferty, Kevin D.</dc:authors>
<dc:pubDate>1996-01-01</dc:pubDate>
<dc:sponsorOrg>USDOE - Office of Energy Efficiency and Renewable Energy (EE)</dc:sponsorOrg>
<dc:researchOrg>Geo-Heat Center, Oregon Institute of Technology, Klamath Falls, OR (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2006-10-23</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dcq:identifier-purl type="application/pdf">http://www.osti.gov/geothermal/servlets/purl/892024-JpfRtc/</dcq:identifier-purl>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=892024</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY</dc:subject>
<dc:subjectRelated>Geothermal Legacy</dc:subjectRelated>
</record>
 
 
<record rownumber="93">
<dc:ostiId>892025</dc:ostiId>
<dc:identifier>892025</dc:identifier>
<dc:title>Geothermal Greenhouse Development Update</dc:title>
<dc:authors>Lienau, Paul J.</dc:authors>
<dc:pubDate>1997-01-01</dc:pubDate>
<dc:sponsorOrg>USDOE - Office of Energy Efficiency and Renewable Energy (EE) Geothermal Technologies Program</dc:sponsorOrg>
<dc:researchOrg>Geo-Heat Center</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2006-11-06</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dcq:identifier-purl type="application/pdf">http://www.osti.gov/geothermal/servlets/purl/892025-WReOKL/</dcq:identifier-purl>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=892025</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY</dc:subject>
<dc:subjectRelated>Geothermal Legacy</dc:subjectRelated>
</record>
 
 
<record rownumber="94">
<dc:ostiId>892027</dc:ostiId>
<dc:identifier>892027</dc:identifier>
<dc:title>Chapter 17. Engineering cost analysis</dc:title>
<dc:authors>Higbee, Charles V.</dc:authors>
<dc:pubDate>1998-01-01</dc:pubDate>
<dc:sponsorOrg>USDOE - Office of Energy Efficiency and Renewable Energy (EE)</dc:sponsorOrg>
<dc:researchOrg>Geo-Heat Center, Oregon Institute of Technology, Klamath Falls, OR (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2006-10-02</dc:dateEntry>
<dc:resourceType>Book</dc:resourceType>
<dcq:identifier-purl type="application/pdf">http://www.osti.gov/geothermal/servlets/purl/892027-5j05Ic/</dcq:identifier-purl>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=892027</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY</dc:subject>
<dc:subjectRelated>Geothermal Legacy</dc:subjectRelated>
</record>
 
 
<record rownumber="95">
<dc:ostiId>892028</dc:ostiId>
<dc:identifier>892028</dc:identifier>
<dc:title>Geothermal heat pumps - Trends and comparisons</dc:title>
<dc:authors>Lund, John W.</dc:authors>
<dc:pubDate>1989-01-01</dc:pubDate>
<dc:sponsorOrg>USDOE - Office of Energy Efficiency and Renewable Energy (EE)</dc:sponsorOrg>
<dc:researchOrg>Geo-Heat Center, Oregon Institute of Technology, Klamath Falls, OR (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2006-10-02</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dcq:identifier-purl type="application/pdf">http://www.osti.gov/geothermal/servlets/purl/892028-mnw2lJ/</dcq:identifier-purl>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=892028</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY</dc:subject>
<dc:subjectRelated>Geothermal Legacy</dc:subjectRelated>
</record>
 
 
<record rownumber="96">
<dc:ostiId>892029</dc:ostiId>
<dc:identifier>892029</dc:identifier>
<dc:title>Geothermal Direct Heat Application Potential</dc:title>
<dc:authors>Lienau, Paul J.</dc:authors>
<dc:pubDate>1989-01-01</dc:pubDate>
<dc:sponsorOrg>USDOE - Office of Energy Efficiency and Renewable Energy (EE) Geothermal Technologies Program</dc:sponsorOrg>
<dc:researchOrg>Geo-Heat Center, Oregon Institute of Technology</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2006-10-02</dc:dateEntry>
<dc:resourceType>Conference</dc:resourceType>
<dcq:identifier-purl type="application/pdf">http://www.osti.gov/geothermal/servlets/purl/892029-kqW7Ab/</dcq:identifier-purl>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=892029</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY</dc:subject>
<dc:subjectRelated>Geothermal Legacy</dc:subjectRelated>
</record>
 
 
<record rownumber="97">
<dc:ostiId>892030</dc:ostiId>
<dc:identifier>SF-98-5-1</dc:identifier>
<dc:title>Well-pumping issues in commercial groundwater heat pump systems</dc:title>
<dc:authors>Rafferty, Kevin D.</dc:authors>
<dc:pubDate>1998-01-01</dc:pubDate>
<dc:sponsorOrg>USDOE - Office of Energy Efficiency and Renewable Energy (EE)</dc:sponsorOrg>
<dc:researchOrg>Geo-Heat Center, Oregon Institute of Technology, Klamath Falls, OR (US)</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2006-10-02</dc:dateEntry>
<dc:resourceType>Journal Article</dc:resourceType>
<dcq:identifier-purl type="application/pdf">http://www.osti.gov/geothermal/servlets/purl/892030-Ut5NH2/</dcq:identifier-purl>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=892030</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY</dc:subject>
<dc:subjectRelated>Geothermal Legacy</dc:subjectRelated>
</record>
 
 
<record rownumber="98">
<dc:ostiId>892031</dc:ostiId>
<dc:identifier>892031</dc:identifier>
<dc:title>Geothermal Agriculture in Hungary</dc:title>
<dc:authors>Lund, John W.</dc:authors>
<dc:pubDate>1990-01-01</dc:pubDate>
<dc:sponsorOrg>USDOE - Office of Energy Efficiency and Renewable Energy (EE) Geothermal Technologies Program</dc:sponsorOrg>
<dc:researchOrg>Geo-Heat Center</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2006-10-02</dc:dateEntry>
<dc:resourceType>Other</dc:resourceType>
<dcq:identifier-purl type="application/pdf">http://www.osti.gov/geothermal/servlets/purl/892031-b2xYvj/</dcq:identifier-purl>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=892031</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY</dc:subject>
<dc:subjectRelated>Geothermal Legacy</dc:subjectRelated>
</record>
 
 
<record rownumber="99">
<dc:ostiId>892033</dc:ostiId>
<dc:identifier>892033</dc:identifier>
<dc:title>Geothermal Heat Pump Utilization in the United States</dc:title>
<dc:authors>Lund, John W</dc:authors>
<dc:pubDate>1990-01-01</dc:pubDate>
<dc:sponsorOrg>USDOE - Office of Energy Efficiency and Renewable Energy (EE) Geothermal Technologies Program</dc:sponsorOrg>
<dc:researchOrg>Geo-Heat Center</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2006-10-02</dc:dateEntry>
<dc:resourceType>Other</dc:resourceType>
<dcq:identifier-purl type="application/pdf">http://www.osti.gov/geothermal/servlets/purl/892033-wCdeeQ/</dcq:identifier-purl>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=892033</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY</dc:subject>
<dc:subjectRelated>Geothermal Legacy</dc:subjectRelated>
</record>
 
 
<record rownumber="100">
<dc:ostiId>892035</dc:ostiId>
<dc:identifier>892035</dc:identifier>
<dc:title>Direct Use Geothermal Applications for Brazed Plate Heat Exchangers</dc:title>
<dc:authors>Rafferty, Kevin</dc:authors>
<dc:pubDate>1993-01-01</dc:pubDate>
<dc:sponsorOrg>USDOE - Office of Energy Efficiency and Renewable Energy (EE) Geothermal Technologies Program</dc:sponsorOrg>
<dc:researchOrg>Geo-Heat Center, Oregon Institute of Technology, Klamath Falls, OR</dc:researchOrg>
<dc:language>English</dc:language>
<dc:dateEntry>2006-10-02</dc:dateEntry>
<dc:resourceType>Technical Report</dc:resourceType>
<dcq:identifier-purl type="application/pdf">http://www.osti.gov/geothermal/servlets/purl/892035-aK4YMJ/</dcq:identifier-purl>
<dc:citation>http://www.osti.gov/energycitations/product.biblio.jsp?osti_id=892035</dc:citation>
<dc:subject>15 GEOTHERMAL ENERGY</dc:subject>
<dc:subjectRelated>Geothermal Legacy</dc:subjectRelated>
</record>
 
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