A comparison of electric power output of CO2 Plume Geothermal (CPG) and brine geothermal systems for varying reservoir conditions

Author:

Adams Benjamin M.,Kuehn Thomas H.,Bielicki Jeffrey M.,Randolph Jimmy B.,Saar Martin O.

Funder

National Science Foundation (NSF) Sustainable Energy Pathways (SEP)

Publisher

Elsevier BV

Subject

Management, Monitoring, Policy and Law,Mechanical Engineering,General Energy,Building and Construction

Reference66 articles.

1. Massachusetts Institute of Technology (MIT), The future of geothermal energy: impact of enhanced geothermal systems (EGS) on the United States in the 21st century; 2006. .

2. National Renewable Energy Laboratory (NREL), Geothermal power generation: current and planned nameplate capacity (MW) by state; 2014. .

3. Levelized costs of electricity and direct-use heat from enhanced geothermal systems;Beckers;J Renew Sustain Energy,2014

4. Induced seismicity associated with enhanced geothermal systems;Majer;Geothermics,2007

5. Brown D. A hot dry rock geothermal energy concept utilizing supercritical CO2 instead of water. In: Proceedings of the twenty-fifth workshop on geothermal reservoir engineering, Stanford, California: Stanford University; January 24–26, 2000.

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