A FDEM-based 2D coupled thermal-hydro-mechanical model for multiphysical simulation of rock fracturing
Author:
Publisher
Elsevier BV
Subject
Geotechnical Engineering and Engineering Geology
Reference89 articles.
1. Modeling coupled THM processes of geological porous media with multiphase flow: theory and validation against laboratory and field scale experiments;Chen;Comput Geotech,2009
2. 25 years of DECOVALEX - scientific advances and lessons learned from an international research collaboration in coupled subsurface processes;Birkholzer;Int J Rock Mech Min Sci,2019
3. DECOVALEX-an international Co-operative research project on mathematical models of coupled THM processes for safety analysis of radioactive waste repositories;Jing;Int J Rock Mech Min Sci Geomech Abstr,1995
4. The DECOVALEX III project: a summary of activities and lessons learned;Tsang;Int J Rock Mech Min Sci,2005
5. Modeling three-dimensional fluid-driven propagation of multiple fractures using TOUGH-FEMM;Tang;Rock Mech Rock Eng,2019
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