A multiscale hydro-geochemical-mechanical approach to analyze faulted CO2reservoirs
Author:
Affiliation:
1. Pacific Northwest National Laboratory; Richland WA USA
Publisher
Wiley
Subject
Environmental Chemistry,Environmental Engineering
Link
http://onlinelibrary.wiley.com/wol1/doi/10.1002/ghg.1616/fullpdf
Reference49 articles.
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2. Seal integrity and feasibility of CO2 sequestration in the Teapot Dome EOR pilot: geomechanical site characterization;Chiaramonte;Environ Geol,2008
3. Optimization of a CO2 storage project based on thermal, geomechanical and induced fracturing effects;Goodarzi;J Petrol Scie Eng,2015
4. Fault friction and slip stability not affected by Co2 storage: Evidence from short-term laboratory experiments on North Sea reservoir sandstones and caprocks;Samuelson;Int J Greenh Gas Control,2012
5. Coupled dynamic flow and geomechanical simulations for an integrated assessment of CO2 storage impacts in a saline aquifer;Tillner;Energy Procedia,2014
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1. Coupled modeling of multiphase flow and poro-mechanics for well operations on fault slip and methane production;Acta Mechanica;2020-06-08
2. Statistical based hydromechanical models to estimate poroelastic effects of CO 2 injection into a closed reservoir;Greenhouse Gases: Science and Technology;2020-01-26
3. Analysis of a Complex Faulted CO2 Reservoir Using a Three-dimensional Hydro-geochemical-Mechanical Approach;Energy Procedia;2017-07
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