| A Study for the Use of Low Enthalpy Geothermal Water for District Heating |
Matano, Y. |
Low Enthalpy System and Direct Use |
— |
Japan International Geothermal Symposium |
1988 |
English |
| Studies on the Conveyance and Distribution of Geothermal Hot Water. Results of Effective Geothermal Water Supply System at Shuzenji Hot Springs, Shizuoka Prefecture |
Hosoya, N. and Nakajima, K. |
Low Enthalpy System and Direct Use |
— |
Japan International Geothermal Symposium |
1988 |
English |
| Actual Problems of Developing the Utilization of Low-Temperature, High-Enthalpy Geothermal Energy |
Kontra, J. |
Low Enthalpy System and Direct Use |
— |
Japan International Geothermal Symposium |
1988 |
English |
| Installed Thermal Capacity and Thermal Energy Used of Direct Uses of Geothermal Energy in Japan |
Sekioka, M. |
Low Enthalpy System and Direct Use |
— |
Japan International Geothermal Symposium |
1988 |
English |
| A Geothermal Lost Circulation Zone Mapping Tool |
Bauman, T. J. |
Lost circulation; Well logging; Equipment design |
Logs; Well Tests; Sandia; Logging Tools; Well Logging; Caliper Logs |
Geothermal Resources Council Transactions |
1985 |
English |
| Evaluation of a Potential Borehole Televiewer Technique for Characterizing Lost Circulation Zones |
Glowka, David A.; Loeppke, Glen E.; Lysne, Peter C.; Wright, Elton K. |
Lost circulation; Televiewers; Equipment design; Fractures; |
Drilling; Equipment; Lost Circulation Zone; Borehole Televiewer |
Geothermal Resources Council Transactions |
1990 |
English |
| Production Problems Review of Las Tres Virgenes Geothermal Field, Mexico |
De Dios Ocampo-Diaz, Juan; Rojas-Bribiesca, Mario |
Lost circulation; Mud Damage; Drawdown; Calcite; Scaling |
International Field Studies; Lost Circulation; Mud Damage; Decline Production; Calcite Scaling |
Geothermal Resources Council Transactions |
2004 |
English |
| Heat Transfer in the Formation Invaded by Drilling Fluid Losses from a Geothermal Well |
Garcia-Gutierrez, A.; Ramos-Alcantara, J.R. |
Lost circulation; Formation damage; Heat transfer; Reservoir |
Geothermal wells; Circulation losses; Fluid flow; Heat transfer; Porous media |
Geothermal Resources Council Transactions |
2010 |
English |
| Progress Toward Using Hydraulic Data to Diagnose Lost Circulation Zones |
Mansure, A. J.; Glowka, D. A. |
Lost circulation; Fluid dynamics; Computer modeling |
Drilling; Operations; Wells; Mud; Lost circulation zone; Fracturing; Lost circulation cementing; Cuttings; Slim hole; Production well; Diagnose; Hydraulic data; Wellbore hydraulics; Non-Newtonian; Non-unique; Steady-state |
Geothermal Resources Council Transactions |
1995 |
English |
| A Full-Scale Facility for Evaluating Lost Circulation Materials and Techniques |
Loeppke, G. E.; Caskey, B. C. |
Lost circulation; Equipment design |
Drilling; USA; New Mexico; Albuquerque; Sandia National Laboratory; Simulated Wellbore; Accumulators; Triplex Mud Pump; Blender; Cross Flow; Mud Rheology; Formation Damage; Foam Rheology; LCM |
Geothermal Resources Council Transactions |
1983 |
English |
| Electromagnetic Telemetry Improves Drilling Efficiencies at The Geysers Geothermal Field |
Steffen, Marc; Evanoff, Jerry |
Lost circulation; Directional drilling; Well logging |
MWD; LWD; Blind; Drilling; EMT; Electromagnetic telemetry; Directional; Air; Efficiency |
Geothermal Resources Council Transactions |
2010 |
English |
| Drifting Cement Plugs for Geothermal Wells |
Rickard, William M.; Hernandez, Jonathan; Bailey, Alan |
Lost circulation plugs |
Cement plug; balanced plug; drift plug; geothermal cementing; lost circulation |
Geothermal Resources Council Transactions |
2012 |
English |
| Chemical Grouting Lost-Circulation Zones with Polyurethane Foam |
Mansure, A. J.; Westmoreland, J. J. |
Lost circulation materials; Equipment design; Drilling |
Drilling Technology |
Geothermal Resources Council Transactions |
1999 |
English |
| Lost Circulation in Geothermal Wells: Research and Development Status |
Caskey, B. C.; Loeppke, G. E. |
Lost circulation materials; Drilling; Well logging; Reservoi |
Drilling; USA; LCM; Lost Zone Characterization; Test Facility; Test Program; Sandia National Laboratory; API Test Cell; Acoustic Borehole Televiewer; Computer Code: nacho |
Geothermal Resources Council Transactions |
1983 |
English |
| Investigation into Bridging and Sealing Efficiency of Shape Memory Polymers Using Novel Additive Manufacturing |
Anyaezu, Tobenna; Vivas, Cesar; Salehi, Saeed; Li, Guoqiang |
Lost circulation materials; Drilling; Equipment design; Poly |
Additive Manufacturing, 3D printing, lost circulation materials, shape memory polymers, wellbore strengthening |
Geothermal Resources Council Transactions |
2021 |
English |
| A Study of TACMUD System |
Sinozaki, Mamoru; Haruguchi, Kenji |
Lost circulation materials; Drilling fluids |
Drilling; Mud; Operations; Japan; Akita; Additives; Isocyanate; Pore Water; Urea Polymers; Sengan Area; Kuji Area; Kyushu; Hatchobaru |
Geothermal Resources Council Transactions |
1986 |
English |
| Evaluating Candidate Lost Circulation Materials for Geothermal Drilling |
Loeppke, Glen |
Lost circulation materials; Drilling fluids |
Drilling; Wells; Operations; Materials Tested; Sandia National Laboratory; Coal; Lost Circulation; Mineral Fiber; Rubber |
Geothermal Resources Council Transactions |
1986 |
English |
| Successfully Applying Micronized Cellulose to Minimize Lost Circulation on the PUNA Geothermal Venture Wells |
Rickard, Bill; Samuel, Abraham; Spielman, Paul; Otto, Michael; Nickels, Nic |
Lost circulation |
Micronized Cellulose; Puna Geothermal Venture; Drilling |
Geothermal Resources Council Transactions |
2010 |
English |
| A Second Generation Approach to Total Lost Circulation: An Interwoven Fiber Network to Seal Losses |
Listi, Renan |
Lost circulation |
Lost circulation; Drilling problems |
Geothermal Resources Council Transactions |
2010 |
English |
| A New Approach to Total Lost Circulation: An Interwoven Fiber Network to Seal Losses |
Listi, Renan; Tuttle, John |
Lost circulation |
— |
Geothermal Resources Council Transactions |
2009 |
English |