Semi-analytical approach to modelling matrix diffusion in fractured media
CSD Engineers AG, Schachenallee 29A, 5000 Aarau, Switzerland
Georg Resele
CSD Engineers AG, Schachenallee 29A, 5000 Aarau, Switzerland
Christian Missal
Dr. Spang Ingenieurgesellschaft für Bauwesen, Geologie und
Umwelttechnik mbH, Rosi-Wolfstein-Strasse 6, 58453 Witten, Germany
Nils Dahlhaus
Itasca Consultants GmbH, Leithestrasse 111A, 45886 Gelsenkirchen,
Germany
Marie Voss
CSD Engineers AG, Schachenallee 29A, 5000 Aarau, Switzerland
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Saf. Nucl. Waste Disposal, 1, 183–184, https://doi.org/10.5194/sand-1-183-2021, https://doi.org/10.5194/sand-1-183-2021, 2021
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The talk presents highlights from the generic identification and evaluation of processes for co-disposal of high-level radioactive waste and low- and intermediate-level radioactive waste in clay rock, crystalline rock and salt rock in the context of the German site-selection process for a deep geological repository for high-level radioactive waste on behalf of the Federal Office for the Safety of Nuclear Waste Management (BASE).
Andreas Poller, Susie M. L. Hardie, Gerhard Mayer, Marie Pijorr, Joachim Poppei, Paul Smith, Luca Urpi, and Laurin Wissmeier
Saf. Nucl. Waste Disposal, 1, 183–184, https://doi.org/10.5194/sand-1-183-2021, https://doi.org/10.5194/sand-1-183-2021, 2021
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The talk presents highlights from the generic identification and evaluation of processes for co-disposal of high-level radioactive waste and low- and intermediate-level radioactive waste in clay rock, crystalline rock and salt rock in the context of the German site-selection process for a deep geological repository for high-level radioactive waste on behalf of the Federal Office for the Safety of Nuclear Waste Management (BASE).
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This work presents a semi-analytical approach to modelling matrix diffusion in fractured media. It can readily be applied to assess potential radionuclide releases from a deep geological repository for radioactive waste without using a numerical code.
This work presents a semi-analytical approach to modelling matrix diffusion in fractured media....