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Reduced-order modeling of near-field THMC coupled processes for nuclear waste repositories in shale

机译:页岩核废料储存库近场THMC耦合工艺的下降阶建模

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Performance assessment (PA) of geologic radioactive waste repositories requires three-dimensional simulation of highly nonlinear, thermo-hydro-mechanical-chemical (THMC), multiphase flow and transport processes across many kilometers and over tens to hundreds of thousands of years. Integrating the effects of a near-field geomechanical process (i.e. buffer swelling) into coupled THC simulations through reduced-order modeling, rather than through fully coupled geomechanics, can reduce the dimensionality of the problem and improve computational efficiency. In this study, PFLOTRAN simulations model a single waste package in a shale host rock repository, where re-saturation of a bentonite buffer causes the buffer to swell and exert stress on a highly fractured disturbed rock zone (DRZ). Three types of stress-dependent permeability functions (exponential, modified cubic, and Two-part Hooke's law models) are implemented to describe mechanical characteristics of the system. Our modeling study suggests that compressing fractures reduces DRZ permeability, which could influence the rate of radionuclide transport and exchange with corrosive species in host rock groundwater that could accelerate waste package degradation. Less permeable shale host rock delays buffer swelling, consequently retarding DRZ permeability reduction as well as chemical transport within the barrier system.
机译:地质放射性废物储存库的性能评估(PA)需要高度非线性,热水机械 - 化学(THMC),多相流动和运输过程的三维模拟,在数千克上达到数十万年。整合近场地质力学过程(即缓冲区膨胀)的效果通过降低阶建模而不是通过完全耦合的地理学来减少问题的维度,提高计算效率。在本研究中,Pflotran模拟在页岩宿主岩储存库中模拟单个废物包,其中膨润土缓冲液的重新饱和使得缓冲液膨胀并在高度裂缝的扰乱岩区(DRZ)上施加压力。实施了三种类型的应力依赖性渗透功能(指数,修改的立方体和两部分胡克的法律模型)以描述系统的机械特性。我们的建模研究表明,压缩骨折可降低DRZ渗透率,这可能影响放射性核素运输速率和宿主岩地下水中的腐蚀性物种,可以加速废物包装降解。较少的渗透性页岩宿主岩延迟缓冲溶胀,因此延迟了DRZ渗透性降低以及屏障系统内的化学输送。

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