| THE USING ENERGY FOR HEAT AND POWER SUPPLYS |
A.B. Alkhasov, R.M.Aliyev, I.M.Abdulagatov |
Modeling |
— |
Stanford Geothermal Workshop |
1998 |
English |
| Mitigation of Corrosion in an Acid Producing Well at Tiwi Geothermal Field |
A.B. Gardner, N.N. Rivera, R.M. Santos, J.S. Toreja, L.B. Villase Aor, and D.L. Gallup |
Tiwi and Bulalo Geothermal Fields |
— |
PNOC-EDC Geothermal Conference |
2001 |
English |
| Assessing groundwater impacts of geothermal development through integrated modelling: Insights from Ulumbu with broader application |
A.B. Horta, J. OSullivan, M. Gravatt |
Session 7.2 - RESERVOIR MODELLING 3 / DIRECT USE |
Geothermal, Modelling, Groundwater, Agriculture |
New Zealand Geothermal Workshop |
2025 |
English |
| Problems of geothermal energy development in the North-Caucasian region |
A.B.Alkhasov, A.M.Amadziev |
Geothermal resources, development of geothermal power engine |
Geothermal energy, heat supply, thermodynamics, heat pump |
International Geothermal Workshop, Russia |
2003 |
English |
| Study of Geothermal Sources and Potential Using GIS in Adrar site, Algeria |
A.Benatiallah and B.Nasri |
GIS in Geothermal Development and volcano hazard monitoring |
temperature, Adrar, GIS, Geothermal Potential |
ARGeo |
2012 |
English |
| Pricing Models in Geothermal District Heating Systems: Balcova - Narlidere Case |
A.Berkan Erdogmus, Baris Ozerdem |
4. Economic and Financing, Privatization |
pricing, district heating, energy metering |
World Geothermal Congress |
2005 |
English |
| Geothermal 3D Subsurface Modeling a Case Study from Sorik Marapi Field, Indonesia |
A.C. Licup, Jr., Z.F. Sarmiento, X.L. Omac, F.C. Maneja, V.R. Chandra, M.B. Esberto, M.J.Z. Villareal, A.S.J. Baltasar, S. Mulyan4, P.P. Sari, Jhonny , D. Juandi |
— |
3D subsurface model, structural, lithology, resistivity and temperature model, Petrel, Sorik Marapi, Indonesia |
Indonesian Geothermal Association Conference |
2017 |
English |
| Estimation of Single Injector Tracer Test Impulse Responses |
A.C. Tripp, M.C. Adams, J.N. Moore, and P.M. Wright |
Reinjection/Tracers |
— |
Stanford Geothermal Workshop |
1990 |
English |
| Silica Scale Prevention Technology Using Organic Additive, Geogard SX |
A.D. Baltazar Jr., S.E. Garcia, R.P. Solis, J.J. Fragata, E.R. Lucero, L.J. Llenarizas and J.E.R. Tabuena |
Materials, Corrosion and Scaling |
— |
New Zealand Geothermal Workshop |
1998 |
English |
| Reservoir Temperatures by Means of Mineralogic-Geochemical Geothermometers |
A.D. Korobov, S.N. Rychagov, S.F. Glavatskikh and S.P. Goncharenko |
8. Geochemistry |
hydrothermal reservoirs, temperatures, correlation of metasomatic zones |
World Geothermal Congress |
2005 |
English |
| Australia’s Geothermal Research Activities |
A.D. Long, A.R. Budd, H. Gurgenci, M. Hand, C. Huddlestone-Holmes, B. Moghtaderi and Regenauer-Lieb, K |
— |
Geothermal, research, technology development |
Australian Geothermal Energy Conference |
2010 |
English |
| Probabilistic MWe Estimation Using Experimental Design and Response Surface Methodology: Findings from Four Fields |
A.E. Ciriaco, S.J. Zarrouk |
Session 1.2 - RESERVOIR MODELLING 1 |
Probabilistic, Prediction, Experimental Design, Response Surface Methodology, Polynomial Model |
New Zealand Geothermal Workshop |
2022 |
English |
| Estimating Wairakei’s 50 Years and 100 Years Mwe Potential Capacity from a Calibrated Natural State Model Using Experimental Design (ED) and Response Surface Methodology (RSM) |
A.E. Ciriaco, S.J. Zarrouk and K. McLean |
Session 1.2 Reservoir Engineering 1 |
Wairakei, probabilistic resource assessment, natural state model, polynomial model, Plackett-Burman |
New Zealand Geothermal Workshop |
2020 |
English |
| PROBABILISTIC RESOURCE ASSESSMENT USING EXPERIMENTAL DESIGN AND SECOND ORDER PROXY MODEL: THE ROTORUA GEOTHERMAL SYSTEM |
A.E. Ciriaco, S.J. Zarrouk, G. Zakeri |
Session 2.1
Reservoir Modelling |
Rotorua, Geothermal resource assessment, probabilistic methods, natural state model, polynomial model, proxy model, response surface, Box-Behnken |
New Zealand Geothermal Workshop |
2018 |
English |
| RECENT DEVELOPMENTS IN THE PYTOUGH SCRIPTING LIBRARY FOR TOUGH2 SIMULATIONS |
A.E. Croucher |
Session 4A |
Reservoir modelling, TOUGH2, Python |
New Zealand Geothermal Workshop |
2015 |
English |
| Modelling Supercritical Geothermal Flows Using TOUGH2 |
A.E. Croucher and M.J. O |
— |
— |
New Zealand Geothermal Workshop |
2007 |
English |
| MODELLING TRACERS USING THE WAIWERA GEOTHERMAL FLOW SIMULATOR |
A.E. Croucher, M.J. O’Sullivan and J.P. O’Sullivan |
Session 1.3 - Reservoir Modelling 1 |
Reservoir models, numerical modelling, flow simulator, tracer |
New Zealand Geothermal Workshop |
2021 |
— |
| Use of an Indigenous Knowledge System (IKS) to Sustaining Thermal Spring Development: A Case Study of Baleni and Sagole in Limpopo Province, South AfricaUse |
A.E. TSHIBALO |
Societal and Cultural Aspects |
: thermal springs, Indigenous Knowledge System, environmental management, salt-making, direct uses. |
World Geothermal Congress |
2020 |
English |
| Variations in Dissolved Gas Compositions of Reservoir Fluids from the Coso Geothermal Field |
A.E. Williams and J.F. Copp |
Chemistry/Gas |
— |
Stanford Geothermal Workshop |
1991 |
English |
| Deliverability Curve Analysis from Flow Production Test Data |
A.F. Fanani, M.A. Habiburrahman, G. Hastriansyah, F. Pasaribu |
Session 3.3 - PRODUCTION & MANAGEMENT 2 |
flow production test, deliverability output curve |
New Zealand Geothermal Workshop |
2022 |
English |