Synthesis of results for Brine Availability Test in Salt (BATS) DECOVALEX-2023 Task E

Author:

Kuhlman Kristopher L.,Bartol Jeroen,Benbow Steven J.,Bourret Michelle,Czaikowski Oliver,Guiltinan Eric,Jantschik Kyra,Jayne Richard,Norris Simon,Rutqvist Jonny,Shao Hua,Stauffer Philip H.,Tounsi Hafssa,Watson Claire

Publisher

Elsevier BV

Reference61 articles.

1. Hydrology and hydraulic properties of a bedded evaporite formation;Beauheim;J Hydrol,2002

2. Beauheim, R.L., A. Ait-Chalel , G. Vouille, et al. , 1997. INTRAVAL Phase 2 WIPP 1 Test Case Report: Modeling of Brine Flow Through Halite at the Waste Isolation Pilot Plant Site, (124 p.) SAND97–0788. Albuquerque, NM: Sandia National Laboratories. 〈https://doi.org/10.2172/481481〉.

3. Benbow, S., C. Watson, A. Bond, S. Norris & S. Parsons, 2022. “Near-Field Coupled Processes in Salt-Based Disposal Facilities – Learning from Modelling in DECOVALEX-2023″ in International High-Level Radioactive Waste Management Conference, Phoenix AZ, 13–17 November 2022.

4. Coupled modelling of brine availability in salt-based disposal facilities - learning from DECOVALEX 2023, in powering the energy transition through subsurface collaboration;Benbow;Br Geol Soc,2024

5. DECOVALEX-2023 - an international collaboration on modeling of coupled subsurface processes important for radioactive waste disposal;Bond;Geomech Energy Environ,2024

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