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Modelling thermo-hydro-mechano-chemical interactions for nuclear waste disposal 被引量:5

Modelling thermo-hydro-mechano-chemical interactions for nuclear waste disposal
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摘要 A fully coupled thermo-hydro-mechano-chemical(THMC) formulation is described in this paper.Special attention is paid to phenomena likely to be encountered in clay barriers used as engineered barriers in the disposal of nuclear radioactive waste.The types of processes considered in the chemical formulation include hydrolysis,complex formation,oxidation/reduction reactions,acid/base reactions,precipitation/dissolution of minerals and cation exchange.Both kinetics-and equilibrium-controlled reactions are incorporated.The formulation is implemented in a numerical code.An application is presented concerning the performance of a large-scale in-situ heating test simulating high-level radioactive waste repository conditions. A fully coupled thermo-hydro-mechano-chemical(THMC) formulation is described in this paper.Special attention is paid to phenomena likely to be encountered in clay barriers used as engineered barriers in the disposal of nuclear radioactive waste.The types of processes considered in the chemical formulation include hydrolysis,complex formation,oxidation/reduction reactions,acid/base reactions,precipitation/dissolution of minerals and cation exchange.Both kinetics-and equilibrium-controlled reactions are incorporated.The formulation is implemented in a numerical code.An application is presented concerning the performance of a large-scale in-situ heating test simulating high-level radioactive waste repository conditions.
出处 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE 2010年第2期97-102,共6页 岩石力学与岩土工程学报(英文版)
基金 supported by ENRESA and the European Commission support given by CNPq(Conselho Nacional de Desenvolvimento Cientíco e Tecnológico)and the assistance of the Ministerio de Ciencia y Tecnología of Spain through research grant(BIA2008-06537)
关键词 机械化学 热模拟 核废料处置 水力 放射性废物处置 高放废物处置库 互作 还原反应 coupling analysis thermo-hydro-mechano-chemical(THMC) analysis radioactive waste engineered barriers bentonite cation exchange
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