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A comparative review of upscaling methods for solute transport in heterogeneous porous media

机译:异质多孔介质中溶质运移升级方法的比较综述

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摘要

The classical Fickian model for solute transport in porous media cannot correctly predict the spreading (the dispersion) of contaminant plumes in a heterogeneous subsurface unless its structure is completely characterized. Although the required precision is outside the reach of current field characterization methods, the advection-dispersion model remains the most widely used model among practitioners. Two approaches can be adopted to solve the effect of physical heterogeneity on transport. First, based on a given characterization of the spatial structure of the subsurface, upscaling methods allow the computation of apparent scale-dependent parameters (especially longitudinal dispersivity) to be used in the classical Fickian model. In the second approach, upscaled (non-Fickian) transport equations with scale-independent parameters are used. In this paper, efforts are made to classify and review upscaling methods for Fickian transport parameters and non-Fickian upscaled transport equations for solute transport, with an emphasis on their mathematical properties and their (one-dimensional) analytical formulations. In particular, their capacity to mode( scale effects in apparent longitudinal dispersion is investigated. Upscaling methods and upscaled models are illustrated in the case of two three-dimensional synthetic aquifers, with lognormal hydraulic conductivity distributions characterized by variance values of 2 and 8.
机译:除非有完整的结构特征,否则用于多孔介质中溶质迁移的经典Fickian模型无法正确预测污染物羽流在异质地下的扩散(扩散)。尽管所需的精度超出了当前场表征方法的范围,但对流扩散模型仍然是从业人员中使用最广泛的模型。可以采用两种方法来解决物理异质性对运输的影响。首先,基于地下空间结构的给定特征,按比例放大方法允许在经典的Fickian模型中使用视在比例尺相关的参数(尤其是纵向分散性)的计算。在第二种方法中,使用了具有比例无关参数的高阶(非菲克)输运方程。在本文中,我们努力对Fickian输运参数和非Fickian输运方程式的溶质输运方程的升序方法进行分类和审查,重点是它们的数学性质和(一维)分析公式。特别是,研究了它们在表观纵向分散中的模式能力(比例效应),并在两个三维合成含水层的情况下,说明了放大方法和放大模型,其对数正态水力传导率分布的特征是方差值为2和8。

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