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Velocity postprocessing schemes for multiscale mixed methods applied to contaminant transport in subsurface flows

机译:用于多尺度混合方法的速度后处理方案应用于地下流动的污染物

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We propose two postprocessing procedures (Patch method and Stitch method) to recover local conservation of velocity fields produced by multiscale approximations that are only conservative in coarse scales. These procedures operate on small overlapping regions and are designed to be implemented in parallel, which makes them relatively inexpensive. We investigate the applicability of such methods when tested on single-phase flow problems using the Multiscale Robin Coupled Method (MRCM) in highly heterogeneous permeability fields for modeling the contaminant transport in the subsurface. Numerical simulations are presented aiming to illustrate and compare the performance of the new methods with a standard procedure, the Mean method, in terms of accuracy in contaminant concentration. We show that for a collection of permeability fields taken as log-normal fields, the new postprocessing procedures provide similar or better accuracy than the Mean method. Then, we turn our attention to flows in high-contrast channelized porous formations, where the new methods robustly yield more accurate results and should thus be favored.
机译:我们提出了两个后处理程序(补丁方法和针脚方法),以恢复仅在粗略尺度上保守的多尺度近似产生的速度场的本地储存。这些程序在小重叠区域上操作,设计用于并行实施,这使得它们相对便宜。我们研究了使用多尺度罗宾耦合方法(MRCM)在高度异构的渗透场上测试单相流动问题时这些方法的适用性,用于在地下污染污染物运输。提出了数值模拟,旨在说明和比较新方法的性能,以标准程序,平均方法,污染物浓度的准确性。我们表明,对于作为日志正常字段的渗透性字段集合,新的后处理程序提供了比平均方法更相似或更好的精度。然后,我们注意我们的注意力在高对比度通道的多孔形成中流动,其中新方法鲁棒地产生更准确的结果,因此应该受到青睐。

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