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Non-Darcian flow in low-permeability media: key issues related to geological disposal of high-level nuclear waste in shale formations

机译:低渗透介质中的非达西渗流:与页岩岩层中高级核废料的地质处置有关的关键问题

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In clay or other low-permeability media, water flow becomes non-Darcian and characterized by the nonlinear relationship between water flux and hydraulic gradient. This work is devoted to addressing a number of key issues related to geological disposal of high-level nuclear waste in clay/shale formations. It is demonstrated that water flow velocity in the damaged zone (often considered as a potential preferential advection paths in a repository) surrounding the tunnel is extremely small, as a result of non-Darcian flow behavior, such that solute transport is dominated by diffusion, rather than advection. The finding is also consistent with the often-observed existence of persistent abnormal pressures in shale formations. While relative permeability is the key parameter for modeling the unsaturated flow process, without incorporating non-Darcian flow behavior, significant errors can occur in the determination of relative permeability values from traditional measurement methods. An approach for dealing with temperature impact on non- Darcian flow and a formulation to calculate non-Darcian water flux in an anisotropic medium are presented, taking into consideration that a geological repository is subject to temperature evolution in the near field as a result of heat generated by nuclear waste, and that shale formations are generally anisotropic.
机译:在粘土或其他低渗透性介质中,水流变为非达西曲线,其特征是水通量与水力梯度之间呈非线性关系。这项工作致力于解决与粘土/页岩地层中高级核废料的地质处置有关的许多关键问题。结果表明,由于非达西流体的流动行为,在隧道周围的受损区域(通常被认为是储存库中潜在的优先对流路径)中的水流速极小,以致溶质运移以扩散为主,而不是平流。该发现也与经常观察到的页岩地层中持续存在的异常压力一致。虽然相对渗透率是建模非饱和流动过程的关键参数,但未考虑非达西流体流动行为,但是在通过传统测量方法确定相对渗透率值时可能会出现重大误差。提出了一种解决温度对非达西流体的影响的方法,并提出了一种计算各向异性介质中非达西水通量的公式,同时考虑到地质储藏库会由于热而在近场中发生温度演化。由核废料产生,页岩地层通常是各向异性的。

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