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A theoretical framework for modeling dilution enhancement of non-reactive solutes in heterogeneous porous media

机译:建立非均质多孔介质中非反应性溶质稀释增强模型的理论框架

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摘要

Spatial heterogeneity of the hydraulic properties of geological porous formations leads to erratically shaped solute clouds, thus increasing the edge area of the solute body and augmenting the dilution rate. In this study, we provide a theoretical framework to quantify dilution of a non-reactive solute within a steady state flow as affected by the spatial variability of the hydraulic conductivity. Embracing the Lagrangian concentration framework, we obtain explicit semi-analytical expressions for the dilution index as a function of the structural parameters of the random hydraulic conductivity field, under the assumptions of uniform-in-the-average flow, small injection source and weak-to-mild heterogeneity. Results show how the dilution enhancement of the solute cloud is strongly dependent on both the statistical anisotropy ratio and the heterogeneity level of the porous medium. The explicit semi-analytical solution also captures the temporal evolution of the dilution rate; for the early- and late-time limits, the proposed solution recovers previous results from the literature, while at intermediate times it reflects the increasing interplay between large-scale advection and local-scale dispersion. The performance of the theoretical framework is verified with high resolution numerical results and successfully tested against the Cape Cod field data. (C) 2015 Elsevier B.V. All rights reserved.
机译:地质多孔地层水力特性的空间异质性导致溶质云呈不规则形状,从而增加了溶质体的边缘面积并提高了稀释率。在这项研究中,我们提供了一个理论框架来量化稳态流动中非反应性溶质的稀释度,该稀释度受水力传导率的空间变异性影响。围绕拉格朗日浓度框架,我们在平均流量均匀,注入源少且注入力弱的前提下,根据随机水力传导率场的结构参数,获得了稀释指数的显式半解析表达式。轻度异质性。结果表明,溶质云的稀释增强如何强烈取决于统计各向异性比和多孔介质的非均质性水平。显式的半解析解还可以捕获稀释率的时间演变;对于早期和晚期极限,所提出的解决方案从文献中恢复了先前的结果,而在中间时间,它反映了大规模对流和局部尺度弥散之间不断增加的相互作用。理论框架的性能已得到高分辨率数值结果的验证,并已成功地针对Cape Cod现场数据进行了测试。 (C)2015 Elsevier B.V.保留所有权利。

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