Thermo-Hydro-Mechanical-Chemical (THMC) Modelling of the Bentonite Barrier in Final Disposal of High Level Nuclear Waste (original) (raw)

Using COMSOL for the Transport Modelling of Some Special Cases in a Bentonite Buffer in a Final Repository for Spent Nuclear Fuel

Markus Olin

2009

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Title : Investigation of the thermo-hydro-mechanical behavior of Czech bentonite used as a model material for planning of high level nuclear waste disposal

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Chemical Evolution of Bentonite Buffer in a Final Repository of Spent Nuclear Fuel During the Thermal Phase

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The Effect of Porosity Change in Bentonite Caused by Decay Heat on Radionuclide Transport through Buffer Material

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Modeling Transport of Water, Ions, and Chemical Reactions in Compacted Bentonite: Comparison Among Toughreact, Numerrin, and Comsol Multiphysics

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Modeling of the Thermohydrodynamic and Reactive Behavior of Compacted Clay for High-Level Radionuclide Waste-Management Systems

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Arabian Journal of Geosciences, 2017

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Water retention of a bentonite for deep geological radioactive waste repositories: High-temperature experiments and thermodynamic modeling

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Simulation of repository gas migration in a bentonite buffer

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Proceedings of the ICE - Engineering and Computational Mechanics, 2014

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David Holton

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THCM numerical simulations of the engineered barrier system for radioactive waste disposal

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Model development and calibration for the coupled thermal, hydraulic and mechanical phenomena of the bentonite

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NUMERICAL SIMULATION AND BACK ANALYSIS OF COUPLED THERMO-HYDRO-MECHANICAL BEHAVIOR OF SAND BENTONITE MIXTURE

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Numerical Simulation and Inverse Analysis of Thermo-Hydro-Mechanical Behavior of Sand-Bentonite Mixture

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Physics and Chemistry of the Earth, Parts A/B/C, 2011

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Bentonite–Concrete Interactions in Engineered Barrier Systems during the Isolation of Radioactive Waste Based on the Results of Short-Term Laboratory Experiments

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Factors controlling rock–clay buffer interaction in a radioactive waste repository

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