| CONCEPTUAL MODEL AND RECHARGE AREA OF GEOTHERMAL SYSTEM GEDE-PANGRANGO AND PANCAR BASED ON GEOCHEMICAL AND HYDROGEOLOGICAL DATA |
H.C. Sirait, N.R. Herdianita |
Session 5.1
Geothermal Geochemistry |
Geothermal system, reservoir, cap rock, recharge area, isotope, West Java, Indonesia |
New Zealand Geothermal Workshop |
2018 |
English |
| Conceptual Model Based on Preliminary Observation of Ongoing Geothermal Resource Appraisal at the Domes Wellfield, Olkaria, Kenya |
Kanda, Isaac |
Reservoir modeling; Well logging; Temperature gradients |
Geothermal; circulation losses; geothermometers; well discharge enthalpy; well outputs and reservoir pressures |
Geothermal Resources Council Transactions |
2011 |
English |
| Conceptual Model Evolution of the Tauhara Geothermal Reservoir from 1960-2020 |
J. McDowell, P. Bixley and F. Sepulveda |
Session 1.3 Geoscience 1 |
Tauhara, conceptual model, reinjection, pressure response, deep permeability, compartmentalization |
New Zealand Geothermal Workshop |
2020 |
English |
| Conceptual Model Evolution of the Tauhara Geothermal Reservoir from 1960-2020 |
Julian MCDOWELL, Paul BIXLEY and Fabian SEPULVEDA |
Case Histories |
Conceptual model, Tauhara, deep permeability, reinjection, pressure response, compartmentalisation |
World Geothermal Congress |
2020 |
English |
| Conceptual Model for a Basalt-Related Geothermal System: Mountain Home AFB, Idaho, USA |
Dennis L. NIELSON, John W. SHERVAIS, Jonathan GLEN |
Geology |
basaltic magmatism, sills, normal faults, hydrothermal breccias, clay alteration, gravity |
Stanford Geothermal Workshop |
2019 |
English |
| Conceptual Model for Coupling Geothermal Power Plants with Deep Reservoirs |
G. Blöcher, S. Kranz, G. Zimmermann , S. Frick, A. Hassanzadegan, I. Moeck, W. Brandt, A. Saadat and E. Huenges |
22. Reservoir Engineering |
reservoir engineering, enhanced geothermal systems, geothermal power plant, coupled simulation |
World Geothermal Congress |
2010 |
English |
| Conceptual model for non-volcanic geothermal resources |
S. Tamanyu and K. Sakaguchi |
Hydrogeothermics, geochemistry |
geothermal resources area, non-volcanic area, hot spring, Tohoku volcanic arc, conceptual model |
European Geothermal Conference |
2003 |
English |
| Conceptual Model for Snake River Plain Geothermal Systems Based on Slim-Hole Exploration at Mountain Home, Idaho |
Dennis L. NIELSON, John W. SHERVAIS |
Geology |
basalt, core drilling, burried geothermal system, temperature while drilling |
Stanford Geothermal Workshop |
2014 |
English |
| Conceptual Model of Asal Rift |
Abass MOUSSA MIGUIL |
Reservoir Engineering |
Conceptual model, Power Production |
World Geothermal Congress |
2020 |
English |
| Conceptual Model of Geothermal Resources of Alaşehir in the Continental Rift Zone of the Gediz Within the Menderes Massif, Western Anatolia, Turkey |
Nevzat OZGUR |
Field Studies |
Turkey, Menderes Massif, Gediz, Alasehir, geothermal modelling, power plants |
Stanford Geothermal Workshop |
2017 |
English |
| Conceptual Model of Mt. Natib Geothermal Area as Revealed by Electromagnetic and Drilling Data |
Nilo A. APUADA, Wen J. WHAN, Fernando S. PENARROYO, Sherwin MENDIOLA and Ariel D. FRONDA |
Exploration |
controlled source magnetotelluric, magnetotelluric |
World Geothermal Congress |
2020 |
English |
| Conceptual Model of Outflow Zone in Mount Ungaran Geothermal System, Semarang, Central Java Using Geology and Geochemistry of Manifestation Analysis |
A.Y. Kencana and N.R. Herdianita |
— |
caldera, geochemistry, Kendalisodo, outflow, Ungaran |
New Zealand Geothermal Workshop |
2020 |
English |
| Conceptual Model of Suswa Geothermal Prospect, Kenya |
Jill HAIZLIP, William CUMMING, Nicholas HINZ, Glenn MELOSH, Mark HARVEY, Keg ALEXANDER, J. Rúnar MAGNÚSSON, Sunna Björg REYNISDÓTTIR, |
Resource Assessment |
Suswa, Kenya, East African Rift, conceptual model, gas geochemistry, MT, well target |
World Geothermal Congress |
2020 |
English |
| Conceptual Model of the Berlin Geothermal Field, El Salvador |
Salvador Handal Candray |
Additional Papers |
— |
PNOC-EDC Geothermal Conference |
1997 |
English |
| Conceptual Model of the Hveragerdi Geothermal Reservoir Based on Geochemical Data |
Kristj·n Geirsson and Stef·n ArnÛrsson |
SECTION 4 ? Exploration and Conceptual Modeling |
geochemistry, geothermal, geothermometers, Hveragerdi, Iceland, mixing models |
World Geothermal Congress |
1995 |
English |
| Conceptual Model of the Klamath Falls, Oregon Geothermal Area |
R. H. Prucha |
Reservoir Modelling (Field Studies) |
— |
Stanford Geothermal Workshop |
1987 |
English |
| Conceptual Model of the Menengai Geothermal Field |
Geoffrey Mibei, Joseph Mutua, Lucy Njue and Calistus Ndongoli |
— |
Reservoir, Intrusion, Marker horizon, Metamorphism, Lavas |
ARGeo |
2016 |
English |
| Conceptual model of the Roseau Valley geothermal system, Dominica, Lesser Antilles |
R. Libbey, J. Murphy, F. John, D. Eloi, S. Webbison, S.S. Jonsson, D. Porbornsson, A. Johnson, R. Bruney, Z. Reynolds, R. Zuza, D. Spake |
Session 3.2 - GEOTHERMAL GEOLOGY 1 |
Dominica, Wotten Waven, Conceptual Model,
Caribbean, Lesser Antilles, Outflow, Island Arc |
New Zealand Geothermal Workshop |
2024 |
English |
| Conceptual Model of the Structure of the Nizhne-Koshelevsky Geothermal Steam Field (South Kamchatka) |
Ivan NUZHDAEV, Sergey RYCHAGOV, Ilyas ABKADYROV, Denis DENISOV, Sergey FEOFILAKTOV |
Geophysics |
vapour-dominated geothermal steam field, subvolcanic intrusion, deep fault, structure, boiling zone, aquaclude, fluid |
World Geothermal Congress |
2020 |
English |
| Conceptual Model of the Zhangzhou Low Temperature System and Its Surrounding Catchment (Fujian Province, P. R. China) |
Yang Zhongke, Hu Shengbiao, and M. P. Hochstein |
Geoscience |
— |
Stanford Geothermal Workshop |
1990 |
English |