| Modelling Coupled Component Based Multiphase and Reactive Transport Processes in Deep Geothermal Reservoirs Using OpenGeoSys |
Haibing SHAO, Yonghui HUANG, Olaf KOLDITZ |
Software for Geothermal Applications |
reactive transport, multiphase flow, coupled processes, numerical modelling, OpenGeoSys |
World Geothermal Congress |
2015 |
English |
| Reactive transport modelling of NCG-reinjection at Ngawha geothermal field |
V. Rajput, E. Kaya, B. Lynne, D.E. Altar |
Session 4.3 - RESERVOIR MODELLING 2 |
Reactive transport simulation, Ngāwhā geothermal field, NCG reinjection, TOUGHREACTTM |
New Zealand Geothermal Workshop |
2024 |
English |
| Reactive Geothermal Transport Simulations to Study Incomplete Neutralization of Acid Fluid Using Multiple Interacting Continua Method in Onikobe Geothermal Field, Japan |
Norifumi Todaka, Chitoshi Akasaka, Tianfu Xu, and Karsten Pruess |
8. Geochemistry |
Reactive transport simulation, MINC model, acidic fluid, Onikobe |
World Geothermal Congress |
2005 |
English |
| Understanding mineralogical and geochemical evolution in geothermal reservoirs through reactive transport modelling |
D.E. Altar, S.J. Zarrouk, E. Kaya |
Session 8.2 - RESERVOIR MODELLING 3 |
Reactive transport simulation, Fluidrock interaction, Natural state reservoir model,
TOUGHREACT™ |
New Zealand Geothermal Workshop |
2023 |
— |
| TOUGHREACT Code Applications to Problems of Reactive Chemistry in Geothermal Production-injection Wells. First Exploratory Model for Ahuachap·n and BerlÌn Geothermal Fields |
Francisco Montalvo, Tianfu Xu, and Karsten Pruess |
11. Reservoir Engineering |
reactive transport simulation calcite & silica scaling |
World Geothermal Congress |
2005 |
English |
| An Approach to Modeling Coupled Thermal-Hydraulic-Chemical Processes in Geothermal Systems |
Jennifer Palguta, Colin F. Williams, Steven E. Ingebritsen, Stephen H. Hickman, and Eric Sonnenthal |
Modeling |
reactive transport models; geochemical alteration |
Stanford Geothermal Workshop |
2011 |
English |
| On Study of Mineral Scaling of Brine Reinjection Using Thermo-hydro-chemical Coupled Simulation |
Tianfu XU, Jingyi CHEN, Zhenjiao JIANG, Bo FENG |
Corrosion and Scaling |
Reactive transport modeling; mineral scaling; injection water; water-rock interaction. |
World Geothermal Congress |
2020 |
English |
| Assessing the Geochemical Impact of Injection of Cooled Triassic Brines into the Dogger Aquifer (Paris Basin, France): A 2D Reactive Transport Modeling Study |
C. Castillo, C. Kervévan, N. Jacquemet, V. Hamm, V. Bouchot, B. Sanjuan |
Geochemistry |
Reactive transport modeling, injectivity, Paris Basin (France) |
Stanford Geothermal Workshop |
2011 |
English |
| Reactive transport modelling of fluid-NCG reinjection in Ngā Tamariki geothermal field |
Y. Siahaan, E. Kaya, D.E. Altar, J. Mering, D. Subekti, A. Utami, R. Atayde, K. Melia, F. Sepulveda |
Session 4.3 - RESERVOIR MODELLING 2 |
reactive transport model, TOUGHREACT, NCG reinjection, Ngā Tamariki |
New Zealand Geothermal Workshop |
2024 |
English |
| Scaling of a Geothermal Well in Menengai Geothermal Prospect: A Reactive Transport Model |
Mulusa, George Igunza |
Brine chemistry; Scaling; Calcite |
Reactive transport model, scaling, calcite, production |
Geothermal Resources Council Transactions |
2021 |
English |
| A Reactive Tracer Analysis Method for Monitoring Thermal Drawdown in Geothermal Reservoirs |
Mitchell A. Plummer, Carl D. Palmer, Earl D. Mattson, Laurence C. Hull |
Tracers |
reactive tracers, thermal drawdown |
Stanford Geothermal Workshop |
2011 |
English |
| Heterogeneous Hydrolysis of a Thermally Degrading Tracer |
Jay T. BENDER, Adam J. HAWKINS, Robert D. GROOMS, Colette J. SCHISSEL, Jefferson W. TESTER |
Tracers |
reactive tracers, thermal degradation, thermal drawdown, temperature sensing, reservoir characterization, geochemistry |
Stanford Geothermal Workshop |
2020 |
English |
| Sensitivity of a Reactive-Tracer Based Estimate of Thermal Breakthrough in an EGS to Properties of the Reservoir and Tracer |
Mitchell PLUMMER, Earl MATTSON, Carl PALMER, Laurence HULL |
Tracers |
reactive tracers, Raft River, Idaho |
Stanford Geothermal Workshop |
2012 |
English |
| The Utility of Threshold Reactive Tracers For Characterizing Temperature Distributions in Geothermal Reservoirs |
Morgan AMES, Kewen LI, Roland HORNE |
Tracers |
reactive tracers, nanosensors, temperature profile measurement, thermal breakthrough prediction |
Stanford Geothermal Workshop |
2013 |
English |
| Sensitivity of a Reactive-Tracer Based Estimate of Thermal Breakthrough in an EGS to Properties of the Reservoir and Tracer |
Mitchell Plummer, Carl Palmer, Laurence Hull, Earl Mattson |
Tracers |
reactive tracer, thermal drawdown, thermal breakthrough |
Stanford Geothermal Workshop |
2010 |
English |
| Reactive Flow in a Natural Fracture in Poro-thermoelastic Rock |
Chakra Rawal, Ahmad Ghassemi |
HDR/EGS |
Reactive Flow; Thermoelasticity; Fracture Aperture; Finite Element Method; Displacement Discontinuity |
Stanford Geothermal Workshop |
2010 |
English |
| Reactive Flow of Cold Water Injected into the Thermal Aquifer; 1-D Numerical Model |
Pawel. M. Lesniak |
Hydrogeothermics |
Reactive flow, porosity change, numerical model |
European Geothermal Conference |
1999 |
English |
| Numerical Investigation of the Impacts of Geothermal Reactive Flow Coupled for Wellbore and Reservoir |
Hakan Alkan |
Geothermal Reservoirs |
Reactive flow, geothermal reservoir assessment, productivity index, calcite precipitation, numerical modelling |
European Geothermal Conference |
2007 |
English |
| Three New Hot Spring Vents Exposed at Orakei Korako Geothermal Field, New Zealand |
B.Y. Lynne and G.J. Smith |
Session 1.3 Geoscience 1 |
Reactivation of buried hot spring vents, changes to surface activity, Orakei Korako, Ground Penetrating Radar |
New Zealand Geothermal Workshop |
2020 |
English |
| Historic Flow Conditions Preserved in Siliceous Sinter Vent Walls of Three Newly-Exposed Hot Spring Vents at Orakei Korako, New Zealand |
B.Y. Lynne |
Session 6.2 - GEOTHERMAL GEOLOGY |
Reactivation of buried hot spring vents, changes to surface activity, Orakei Korako, Ground Penetrating
Radar, Scanning Electron Microscopy, siliceous sinter textures |
New Zealand Geothermal Workshop |
2022 |
English |