Modelling of failure and fracture development of the Callovo-Oxfordian claystone during an in-situ heating experiment associated with geological disposal of high-level radioactive waste

Author:

Sasaki Tsubasa,Yoon Sangcheol,Rutqvist Jonny

Funder

US Department of Energy Office of Spent Fuel and Waste Science and Technology

Publisher

Elsevier BV

Reference45 articles.

1. Apted, M., & Ahn, J. (2010). Geological Repository Systems for Safe Disposal of Spent Nuclear Fuels and Radioactive Waste (1st Ed.). Woodhead Publishing. 〈https://www.elsevier.com/books/geological-repository-systems-for-safe-disposal-of-spent-nuclear-fuels-and-radioactive-waste/apted/978–1-84569–542-2〉.

2. Main outcomes from in situ thermo-hydro-mechanical experiments programme to demonstrate feasibility of radioactive high-level waste disposal in the Callovo-Oxfordian claystone;Armand;J Rock Mech Geotech Eng,2017

3. Geometry and properties of the excavation-induced fractures at the meuse/haute-marne URL drifts;Armand;Rock Mech Rock Eng,2014

4. Short- and long-term behaviors of drifts in the Callovo-Oxfordian claystone at the Meuse/Haute-Marne Underground Research Laboratory;Armand;J Rock Mech Geotech Eng,2013

5. Bechthold, W., Rothfuchs, T., Poley, A., Ghoreychi, M., Heusermann, S., Gens, A., & Olivella, S. Backfilling and sealing of underground repositories for radioactive waste in salt (BAMBUS Project); 1999. 〈https://op.europa.eu/en/publication-detail/-/publication/49ae90df-e3a6–4bd5-b55e-e505a9a15753〉.

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