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A computationally practical approach for modeling complex mean flows in mildly heterogeneous media

机译:在轻度异构介质中建模复杂均值流的一种计算实用方法

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摘要

We present in this paper a critical review of recent research on nonuniform mean flows in heterogeneous porous media, examine why existing stochastic methods are computationally so difficult to implement, and introduce a new and efficient alternative. Specifically, we reformulate the nonstationary spectral method of Li and McLaughlin (1991, 1995) and present a new way for its numerical implementation, combining the best advantages of efficient analytical solutions and flexible numerical techniques. The result is a substantially improved stochastic technique that allows modeling efficiently the nonlinear scale effects for moderately heterogeneous media in the presence of general nonstationarity. In particular, the reformulated approach allows computing the nonlocal and nonstationary mean "closure" flux using a coarse grid without having to resolve numerically the small-scale heterogeneous dynamics. The methodological innovation significantly increases the size and expands the range of groundwater problems that can be analyzed with stochastic methods. The effectiveness of the new spectral approach is illustrated with two concrete examples and a systematic comparison with existing Stochastic methods.
机译:我们在本文中对非均质多孔介质中非均匀均值流的最新研究进行了重要的综述,探讨了为什么现有的随机方法在计算上如此难以实现,并提出了一种新的有效替代方法。具体而言,我们重新组合了Li和McLaughlin(1991,1995)的非平稳谱方法,并提出了一种新的数值方法,该方法结合了高效解析解决方案和灵活数值技术的最佳优点。结果是大大改进了随机技术,该技术允许在存在普遍的非平稳性的情况下,对中等程度异质介质的非线性尺度效应进行有效建模。特别地,重新制定的方法允许使用粗网格来计算非局部和非平稳平均“闭合”通量,而不必在数值上解析小规模的异构动力学。方法上的创新大大增加了地下水的规模,扩大了可以用随机方法分析的地下水问题的范围。通过两个具体示例以及与现有随机方法的系统比较说明了新光谱方法的有效性。

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