| The Three Cs (Conductivity, Connectivity and Conformance) That Control the Performance of Enhanced Geothermal Systems: Lessons Learnt at the Forge EGS Site |
Mukul SHARMA, Yuhao OU |
Enhanced Geothermal Systems |
Conductivity, Connectivity, Fiber optic monitoring, Utah FORGE site |
Stanford Geothermal Workshop |
2026 |
English |
| The Thickness of the Seismogenic Crust in Iceland and Its Implications for Geothermal Systems |
Kristj·n ¡g?stsson and ”lafur G. FlÛvenz |
7. Geophysics |
Seismogenic crust, temperature gradient, |
World Geothermal Congress |
2005 |
English |
| The Thermofacies Concept |
Ingo Sass and Annette E. Götz |
HDR/EGS |
geothermal energy; reservoir characterization; thermo-physical rock properties; sedimentary facies; thermofacies |
Stanford Geothermal Workshop |
2011 |
English |
| The Thermodynamic and Cost Benefits of a Floating Cooling Geothermal Binary Cycle Power Plant at Heber, California |
Pines, H. S.; Pope, W. L.; Green, M. A.; Doyle, P. A.; Silvester, L. F.; Fulton, R. L. |
Economics; Cooling towers; Binary cycle power generation; Co |
USA; California; Imperial; Heber |
Geothermal Resources Council Transactions |
1978 |
English |
| The Thermal Waters of Jász-Nagykun-szolnok County and Their Balneological Utilization |
Sándor Pap |
Others, education |
thermal water reservoir, thermal bath, medical bath, thermal water |
European Geothermal Conference |
2003 |
English |
| The Thermal Structure of the Upper Crust in Central-Southern Italy and Its Correlation with the Distribution of GeoThermal Resources |
G. GOLA, S. BOTTEGHI, F. BROZZETTI, C. CHIARABBA, F. FERRARINI, G. GROPPELLI, G. LAVECCHIA, P. LIMONI, D. MONTANARI, G. NORINI, L. PETRACCHINI, M. POLEMIO, F. SANTALOIA, A. SANTILANO, D. SCROCCA, E. TRUMPY, A. MANZELLA |
Geophysics |
thermal modelling, geothermal resources, central-southern Italy |
World Geothermal Congress |
2020 |
English |
| The Thermal Structure of Continental Lithosphere: a Review |
Gordon |
— |
— |
Australian Geothermal Energy Conference |
2008 |
English |
| The Thermal Stability of the Naphthalene Sulfonic and Naphthalene Disulfonic Acids under Geothermal Conditions: Experimental Results and a Field-Based Example |
Bruce W. Mountain, Jeffery A. Winick |
02. Geothermal Geochemistry |
tracer studies, naphthalene disulfonic acid, naphthalene sulfonic acid, NDS, NSA, Rotokawa, reservoir modelling, experimental geochemistry |
New Zealand Geothermal Workshop |
2012 |
English |
| The Thermal Spectrum of Low-Temperature Energy Use in the United States |
Don Fox, Daniel Sutter, and Jefferson Tester |
Direct Use |
thermal energy use, U.S. energy demand |
Stanford Geothermal Workshop |
2011 |
English |
| The Thermal Resource of Mine Waters in Abandoned Coalfields; Opportunities and Challenges for the United Kingdom |
Gareth FARR and Jon BUSBY |
Heat from Oil/Gas/Coal Fields |
dis-used mines, thermal resource, low enthalpy resources |
World Geothermal Congress |
2020 |
English |
| The Thermal Regime and Geothermal Energy Recovery Potential of the Western Canadian Sedimentary Basin |
Jones, F. W. |
Case Study (Overseas) |
— |
Japan International Geothermal Symposium |
1988 |
English |
| The Thermal Hydrodynamic Model of the Pauzhetka Hydrothermal System (South Kamchatka, USSR) |
Kiryukhin, A. V.; Sugrobov, V. M. |
Exploration; Reservoir modeling; Computer modeling |
Exploration; USSR; Kamchatka; Model; Geology; Pauzhetka |
Geothermal Resources Council Transactions |
1985 |
English |
| The Thermal History of Garland Mineral Springs, North Cascades, Washington, from Apatite Fission Track Analysis of Well Cuttings from Geothermal Exploration Well GAR-1 |
Callahan, Owen A.; Cladouhos, trenton T.; Larson, Benjamin; Ketcham, Richard A. |
Exploration; Shallow temperature surveys; Thermoluminescence |
Thermochronology; apatite fission track; Garland Mineral Springs; GAR-1; Snohomish Public Utility District (SnoPUD); Washington |
Geothermal Resources Council Transactions |
2015 |
English |
| The thermal field of the Upper Rhine Graben – Temperature predictions based on a 3D model |
Freymark, J; Sippel, J; Scheck-Wenderoth, M; Bär, K; Stiller, M; Fritsche, J-G; Kracht, M |
Science – Thermodynamics |
Upper Rhine Graben, 3D structural model, 3D conductive thermal model, 3D coupled heat and fluid transport |
European Geothermal Congress |
2016 |
English |
| The Thermal Conductivity of Some Crystalline and Sedimentary Rocks from Scandinavia |
Kristiansen, Jan I.; Saxov, Svend; Balling, Niels |
Exploration; Thermal conductivity; Geophysical surveys |
Exploration; Denmark; Thermal Conductivity; Heat Flow; Granite; Conductivity; Rock Types |
Geothermal Resources Council Transactions |
1982 |
English |
| The Thermal Conductivity of Rock Under Hydrothermal Conditions: Measurements and Applications |
C. F. Williams, J. H. Sass |
Geoscience |
— |
Stanford Geothermal Workshop |
1996 |
English |
| The Thermal and Chemical Evolution of the Hydrothermal Minerals in Awibengkok 1-2, Awibengkok Geothermal Field, Indonesia |
Moore, Joseph N.; Norman, David I. |
Core sampling; Exploration; Mineralogy; Fluid inclusions; Br |
Awibengkok Scientific Corehole |
Geothermal Resources Council Transactions |
1999 |
English |
| The Thermal 15 Relief Well and Production Performance of the Thermal Shallow Reservoir |
Phil Mogen, John Maney |
The Geysers Thermal Area |
— |
Stanford Geothermal Workshop |
1985 |
English |
| The Theory and Selection of Chemically Reactive Tracers for Reservoir Thermal Capacity Production |
J. W. Tester |
Tracer Flow |
— |
Stanford Geothermal Workshop |
1987 |
English |
| The Testing Projects of Electric Power Production from Geothermal Energy of the Radial-Inward Turbine Generator with nC4H10 as Working Fluid |
Wei, W., Lu, B., Jiao, Q. |
— |
— |
New Zealand Geothermal Workshop |
1987 |
English |