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首页> 外文期刊>Environmental earth sciences >Analysis of the THM behaviour in a clay-based engineered barrier system (EBS): modelling of the HE-E experiment (Mont Terri URL)
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Analysis of the THM behaviour in a clay-based engineered barrier system (EBS): modelling of the HE-E experiment (Mont Terri URL)

机译:在基于粘土的工程屏障系统(EBS)中分析THM行为:HE-E实验建模(Mont Terri URL)

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摘要

To understand the complex thermo-hydro-mechanical (THM) processes and their evolution in a claybased engineered barrier systems (EBS) during the closure phase of a geological repository for radioactive waste, a 1: 2 scale in situ heating experiment (HE-E experiment) has been ongoing since 2011 in the Mont Terri Rock laboratory. Based on the experimental data, a fully coupled THM 3D simulation using the finite-element program OpenGeoSys was carried out. The main objectives of the simulation were to interpret the experimental observations, to understand the thermally induced THM interactions and to analyse the different material properties. Five experimental phases were numerically interpreted, in order to take into account the changes in the temporary material properties during experimental operations. These included the tunnel excavation, the ventilation, the emplacement of the bentonite EBS, the heating phase and the phase after shutdown of the heater. A non-isothermal Richards' flow model was used to take into account the evaporation and vapour diffusion during the heating. The material behaviours of EBS in association with the saturation-dependent thermal conductivity and the water retention behaviour under high temperatures were analysed in detail. The strong thermal, hydraulic and mechanical anisotropic properties of the Opalinus Clay were described by a transversely isotropic model.
机译:要了解放射性废物地质处置库关闭阶段在粘土基工程屏障系统(EBS)中复杂的热-水-机械(THM)过程及其演变过程,请进行1:2比例的原位加热实验(HE-E实验)自2011年以来一直在Mont Terri Rock实验室中进行。根据实验数据,使用有限元程序OpenGeoSys进行了完全耦合的THM 3D仿真。模拟的主要目的是解释实验观察结果,了解热诱导的THM相互作用并分析不同的材料特性。为了考虑到实验操作期间临时材料特性的变化,对五个实验阶段进行了数值解释。其中包括隧道开挖,通风,膨润土EBS的位置,加热阶段以及加热器关闭后的阶段。使用非等温Richards流动模型来考虑加热过程中的蒸发和蒸汽扩散。详细分析了EBS的材料行为,以及与高温相关的饱和度相关的导热率和保水性能。用横向各向同性模型描述了Opalinus粘土的强热,水和机械各向异性。

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