CO2-DISSOLVED: a Novel Concept Coupling Geological Storage of Dissolved CO2 and Geothermal Heat Recovery – Part 4: Preliminary Thermo-Hydrodynamic Simulations to Assess the CO2 Storage Efficiency

Author:

Hamm V.,Kervévan C.,Thiéry D.

Publisher

Elsevier BV

Reference5 articles.

1. Kervévan C., Bugarel F., Galiègue X., Le Gallo Y., May F., O‟Neil K., Sterpenich J. CO2-DISSOLVED: a novel approach to combining CCS and geothermal heat recovery. In: EAGE, editor. Sustainable Earth Sciences, technologies for sustainable use of the deep sub-surface. Pau, France; 30 Sept.- 4 Oct. 2013.

2. Thiéry D. Groundwater Flow Modeling in Porous Media Using MARTHE. in “Modeling Software Volume 5, Chapter 4, pp. 45-60 • Environmental Hydraulics Series”. ISBN: 978-1-84821-157-5. Tanguy J.M., editor; Éditions Wiley/ISTE London. 2010.

3. Thiéry D. Presentation of the MARTHE 7.4 code developed by BRGM. BRGM technical note NT EAU 2012/03 revised. 21 p. 2014.

4. Vinsome P.K.W. and Westerfeld J. A simple method for predicting cap and base rock heat losses in thermal reservoir simulators. JCPT 80-03-04.

5. Improvement of the Calculation Accuracy of Acid Gas Solubility in Deep Reservoir Brines: Application to the Geological Storage of CO2;Kervévan;Oil Gas Sci. Technol.,2005

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