Experiments and Simulations of Fully Hydro-Mechanically Coupled Response of Rough Fractures Exposed to High-Pressure Fluid Injection

Author:

Vogler D.12ORCID,Settgast R. R.3,Annavarapu C.3,Madonna C.4ORCID,Bayer P.5ORCID,Amann F.46

Affiliation:

1. Geothermal Energy and Geofluids, Institute of Geophysics; ETH Zurich; Zurich Switzerland

2. Transport Processes and Reactions Laboratory, Institute of Process Engineering; ETH Zurich; Zurich Switzerland

3. Atmospheric, Earth, and Energy Division, Lawrence Livermore National Laboratory; Livermore CA USA

4. Department of Earth Sciences; ETH Zurich; Zurich Switzerland

5. Institute of new Energy Systems; Ingolstadt University of Applied Sciences (THI); Ingolstadt Germany

6. Chair of Engineering Geology, RWTH Aachen; Aachen Germany

Funder

GEOTHERM II

Publisher

American Geophysical Union (AGU)

Subject

Space and Planetary Science,Earth and Planetary Sciences (miscellaneous),Geochemistry and Petrology,Geophysics

Reference57 articles.

1. A weighted Nitsche stabilized method for small-sliding contact on frictional surfaces;Annavarapu;Computer Methods in Applied Mechanics and Engineering,2015

2. Fundamentals of rock joint deformation;Bandis;International Journal of Rock Mechanics and Mining Sciences and Geomechanics Abstracts,1983

3. Strength, deformation and conductivity coupling of rock joints;Barton;International Journal of Rock Mechanics and Mining Sciences,1985

4. Fluid flow through rock joints: The effect of surface roughness;Brown;Journal of Geophysical Research,1987

5. Modeling of coupled deformation and permeability evolution during fault reactivation induced by deep underground injection of CO2;Cappa;International Journal of Greenhouse Gas Control,2011

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