An evaluation model of the impact of hydrogen ‘piston effect’ on water displacement in a deep geological disposal of radioactive waste

Author:

Saâdi ZakariaORCID,Dymitrowska Magdalena,Deleruyelle Frédéric,Marsal François

Publisher

Springer Science and Business Media LLC

Subject

Earth-Surface Processes,Geology,Pollution,Soil Science,Water Science and Technology,Environmental Chemistry,Global and Planetary Change

Reference16 articles.

1. Amri A, Saâdi Z, Ababou R, Dymitrowska M (2019) Réévaluation du modèle physique de transfert de l'hydrogène pour l'étude du transitoire hydraulique-gaz dans un stockage profond de déchets radioactifs. Poster presentation. In: Journée des thèses IRSN, La Grande Motte, 01–04 April 2019, France

2. ANDRA (2005) Evaluation de la faisabilité du stockage géologique en formation argileuse. Dossier 2005 Argile. https://www.andra.fr/sites/default/files/2017-12/266.pdf

3. Brommundt J, Kaempfer ThU, Enssle CP, Mayer G, Wendling J (2014) Full-scale 3D modelling of a nuclear waste repository in the Callovo–Oxfordian clay. Part 1: thermo-hydraulic two-phase transport of water and hydrogen. In: Norris S, Bruno J, Cathelineau M, Delage P, Fairhurst C, Gaucher EC, Höhn EH, Kalinichev A, Lalieux P, Sellin P (eds) Clays in natural and engineered barriers for radioactive waste confinement, vol 400. Geological Society, Special Publications, London, pp 443–467. https://doi.org/10.1144/SP400.34

4. Dymitrowska M, Smaï F, Bourgeat A (2015) Thermodynamic modelling of hydrogen migration in argillite for a deep geological radioactive waste repository—IRSN contribution to FORGE. Geol Soc Lond Spec Publ 415(1):167–188. https://doi.org/10.1144/SP415.13

5. Enssle CP, Brommundt J, Kaempfer ThU, Mayer G, Wendling J (2012) 3D Modeling of the long-term behavior of a large geological repository for HLW and ILW-LL nuclear waste, considering heat, gas, and radionuclide release and transport—optimizations that allow for detailed large-scale modeling. In: Proceedings of the TOUGH symposium 2012, Berkeley, CA

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