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Three dimensional analysis of combined gas, heat and nuclide transport in a repository in clay rock including coupled thermo-hydro-geomechanical processes

机译:包含耦合热-水-地质力学过程的粘土岩石储层中气体,热和核素联合运移的三维分析

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摘要

To study the coupled thermo-hydrologic-geomechanical processes and their influence on gas and nuclide transport in a two phase flow configuration in a porous medium, a coupling of the thermo-hydrodynamic code TOUGH2 and the thermo-mechanic code FLAC3D is described and applied to analyze three dimensional gas, heat and nuclide transport in a repository for heat generating nuclear waste in a plastic clay rock. According to stress or strain dependent hydrological properties, like, porosity, permeability and capillary pressure, the influence of coupled processes on two phase flow can be relevant. The present procedure can be applied to quantify safety margin related to hydro-fracturing due to pressure build-up caused by gas generation and to define bounding analyses, if the hydrological properties, such as porosity, permeability, and capillary pressure, depending on mean effective normal stress or volumetric strain are applied.
机译:为了研究热-水文-地质力学过程的耦合及其对多孔介质中两相流构型中气体和核素传输的影响,描述了热-流体力学代码TOUGH2和热力学代码FLAC3D的耦合并将其应用于分析了在塑料黏土岩石中产生核废料的热库中的三维气体,热和核素传输。根据应力或应变相关的水文特性,例如孔隙率,渗透率和毛细压力,耦合过程对两相流的影响可能是相关的。如果水文性质(例如孔隙度,渗透率和毛细压力)取决于平均有效有效值,则本程序可用于量化与因气体产生而形成的压力而导致的水力压裂有关的安全裕度,并定义边界分析施加正应力或体积应变。

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