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An interpretation of potential scale dependence of the effective matrix diffusion coefficient

机译:对有效矩阵扩散系数的潜在尺度依赖性的解释

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Matrix diffusion is an important process for solute transport in fractured rock, and the matrix diffusion coefficient is a key parameter for describing this process. Previous studies have indicated that the effective matrix diffusion coefficient values, obtained from a large number of field tracer tests, are enhanced in comparison with local values and may increase with test scale. In this study, we have performed numerical experiments to investigate potential mechanisms behind possible scale-dependent behavior. The focus of the experiments is on solute transport in flow paths having geometries consistent with percolation theories and characterized by multiple local flow loops formed mainly by small-scale fractures. The water velocity distribution through a flow path was determined using discrete fracture network flow simulations, and solute transport was calculated using a previously derived impulse-response function and a particle-tracking scheme. Values for effective (or up-scaled) transport parameters were obtained by matching breakthrough curves from numerical experiments with an analytical solution for solute transport along a single fracture. Results indicate that a combination of local flow loops and the associated matrix diffusion process, together with scaling properties in flow path geometry, seems to be an important mechanism causing the observed scale dependence of the effective matrix diffusion coefficient (at a range of scales).
机译:基质扩散是溶质在裂隙岩中运移的重要过程,基质扩散系数是描述该过程的关键参数。先前的研究表明,从大量现场示踪剂测试获得的有效矩阵扩散系数值与局部值相比有所增强,并且可能随测试规模而增加。在这项研究中,我们进行了数值实验,以研究可能的规模依赖性行为背后的潜在机制。实验的重点是溶质在具有与渗流理论一致的几何形状的流动路径中的传输,其特征是主要由小规模裂缝形成的多个局部流动环。使用离散裂缝网络流动模拟确定通过流动路径的水速分布,并使用先前导出的冲激响应函数和颗粒追踪方案计算溶质运移。有效(或放大)输运参数的值是通过将数值实验中的突破曲线与溶质沿单条裂缝的输运解析解进行匹配来获得的。结果表明,局部流动环和相关的基质扩散过程的结合,以及流路几何学中的缩放特性,似乎是导致观察到的有效基质扩散系数(在一定范围内)的比例依赖性的重要机制。

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