| Using Sequestered CO2 as Geothermal Working Fluid to Generate Electricity and Store Energy |
Mark R. FLEMING, Benjamin M. ADAMS, Martin O. SAAR |
Advanced Technology (Magma, Geopressure, etc.) |
CO2-plume geothermal, carbon capture utilization and storage, geothermal energy, energy storage |
World Geothermal Congress |
2020 |
English |
| The IDDP Success Story - Highlights |
G.O. FRIÃLEIFSSON, B. PÃLSSON, B. STEFÃNSSON, A. ALBERTSSON, Þ. GÃSLASON, E. GUNNLAUGSSON, H.H. THORSTEINSSON, J. KETILSSON, S. SAETHER. C. SÖRLIE, W.A. ELDERS, R.A. ZIERENBERG |
Advanced Technology (Magma, Geopressure, etc.) |
Highlights from IDDP, Magma-EGS system creation, Deep Injection for EGS, Production from a supercritical system |
World Geothermal Congress |
2020 |
English |
| Transition of Numerical Models for the Hydrothermal System of the Kuju Volcano, Japan |
Yasuhiro FUJIMITSU, Jun NISHIJIMA, Sachio EHARA, Tohru MOGI |
Advanced Technology (Magma, Geopressure, etc.) |
Kuju Volcano, numerical model, hydrothermal system, thermal structure |
World Geothermal Congress |
2020 |
English |
| Suitability of the Aquistore CCS Site for a CO2 Circulation Test: Towards CO2-Plume Geothermal (CPG) Power Plant Implementations |
Kevin P. HAU, Alireza RANGRIZ-SHOKRI, Erik NICKEL, Rick J. CHALATURNYK, Martin O. SAAR |
Advanced Technology (Magma, Geopressure, etc.) |
CO2 Plume Geothermal; CO2 Circulation; CO2 Storage; CCUS; Aquistore; Numerical Simulation; TRL |
World Geothermal Congress |
2020 |
English |
| Design of Superhot Geothermal Wells |
Kristinn INGASON, Þóroddur SIGURÃSSON |
Advanced Technology (Magma, Geopressure, etc.) |
superhot geothermal systems, well completion, casings, thermal expansion, IDDP-1, IDDP-2 |
World Geothermal Congress |
2020 |
English |
| Utilization of Superhot Geothermal Systems – Challenges and Opportunities |
Kristinn INGASON, Vilhjálmur KRISTJÃNSSON |
Advanced Technology (Magma, Geopressure, etc.) |
IDDP-1, IDDP-2, superheated geothermal steam, design challenges, lessons learned |
World Geothermal Congress |
2020 |
English |
| IDDP-2 Well Head and Flow-line Design for IDDP-2 |
Þorleikur JÓHANNESSON, Ragnar GUDMUNDSSON, Ómar G INGVARSSON, Geir ÞÓRÓLFSSON, Albert ALBERTSSO |
Advanced Technology (Magma, Geopressure, etc.) |
Reykjanes, IDDP, Super critical fluid, Super heated fluid, Flow test, High pressure Corrosion, Erosion |
World Geothermal Congress |
2020 |
English |
| Thermal Manipulation of Magma Boundary: Advancing Controls on Fluid Flow Via the Krafla Magma Testbed (KMT) |
Yan LAVALLÉE, Anthony H. LAMUR, Jackie E. KENDRICK, Gudjon H. EGGERTSSON, Joshua WEAVER, John C. EICHELBERGER, Paolo PAPALE, Freysteinn SIGMUNDSSON, Donald B. DINGWELL, Sigurdur H. MARKUSSON, Anette K. MORTENSEN, Guðmundur O. FRIÃLEIFSSON, Charles CARRIGAN, John LUDDEN, Hjalti P. INGOLFSSON, and The KMT Consortium |
Advanced Technology (Magma, Geopressure, etc.) |
thermal stimulation, fluid flow, magma, krafla |
World Geothermal Congress |
2020 |
English |
| Energy Test-Beds Role in Providing Safe and Sustainable Energy from the Subsurface |
John LUDDEN, Mike STEPHENSON, Helen CURRAN-TAYLOR |
Advanced Technology (Magma, Geopressure, etc.) |
Energy testbeds, subsurface technology, near magma |
World Geothermal Congress |
2020 |
English |
| Bringing Together Volcano Science and Geothermal Industry: the KMT – Krafla Magma Testbed breaking-through Perspective |
Paolo PAPALE, John EICHELBERGER, Hjalti Pall INGOLFSSON, Yan LAVALLEE, John LUDDEN, Sigurdur MARKUSSON, Freysteinn SIGMUNDSSON, and The KMT Consortium |
Advanced Technology (Magma, Geopressure, etc.) |
magma energy, magma drilling, volcano science, enhanced geothermal systems, KMT infrastructure |
World Geothermal Congress |
2020 |
English |
| Ultra-supercritical Energy Storage |
Klaus REGENAUER-LIEB |
Advanced Technology (Magma, Geopressure, etc.) |
extreme temperatures, extreme pressures, ultra-supercritical fluids |
World Geothermal Congress |
2020 |
English |
| Supercritical Geothermal Cogeneration on the Threshold |
Jim SHNELL, John ORCUTT, William OSBORN and Eric WACHSMAN |
Advanced Technology (Magma, Geopressure, etc.) |
supercritical, ocean floor, rift zone, baseload, dispatchable, electrolysis, hydrogen |
World Geothermal Congress |
2020 |
English |
| Three-Dimensional Thermal Structure in the Tohoku District, Japan Estimated from the Activity Index |
Yota SUZUKI, Hirofumi MURAOKA, Hiroshi ASANUMA |
Advanced Technology (Magma, Geopressure, etc.) |
brittle-plastic transition, brittle-plastic transition, activity index, Tohoku |
World Geothermal Congress |
2020 |
English |
| Effects of Rock Mechanical Behaviors and Silica Precipitations on the Permeability Development in High-Temperature Granitic Rock Bodies: Numerical Studies |
Norihiro WATANABE, Noriaki WATANABE, Hanae SAISHU, Hiroshi ASANUMA |
Advanced Technology (Magma, Geopressure, etc.) |
supercritical geothermal systems, permeability, silica, numerical simulation |
World Geothermal Congress |
2020 |
English |
| Drilling Into the Roots of the Reykjanes Geothermal Field – the IDDP-2 Drilling Project |
Tobias B. WEISENBERGER, Björn S. HARÃARSON, Kiflom G. MESFIN, Gunnlaugur M. EINARSSON, Steinþór NÃELSSON, Robert A. ZIERENBERG, Guðmundur Ó. FRIÃLEIFSSON |
Advanced Technology (Magma, Geopressure, etc.) |
DEEPEGS, Iceland, Reykjanes, drilling, IDDP, supercritical |
World Geothermal Congress |
2020 |
English |
| The Emerging (and Proven) Technologies That Could Finally Make Geothermal Scalable |
Robert WINSLOE, Alexander RICHTER, Jeanine VANY |
Advanced Technology (Magma, Geopressure, etc.) |
closed-loop, scalable, low enthalpy, conduction |
World Geothermal Congress |
2020 |
English |
| Survey of the Casing Material Corrosion Problem for Supercritical Geothermal Development |
Norio YANAGISAWA, Yoshio MASUDA, Hiroshi ASANUMA |
Advanced Technology (Magma, Geopressure, etc.) |
material corrosion rate, super critical, pH, Cr equivalent, geochemistry |
World Geothermal Congress |
2020 |
English |
| Investment attractive geothermal project of Ukraine |
Shurchkov A.V., Zabarny G.N., Khvorov M.M. |
Agricultural direct use |
— |
European Geothermal Conference |
2003 |
English |
| Geothermal water for multiple purposes in Beijing |
Wang Sumei and Xie Guiyin |
Agricultural direct use |
Beijing, Multiple Purposes |
European Geothermal Conference |
2003 |
English |
| Geothermal space heating |
R. Gordon Bloomquist |
Agricultural direct use |
Space heating, District heating, peaking, absorption technology |
European Geothermal Conference |
2003 |
English |