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A discontinuous control volume finite element method for multi-phase flow in heterogeneous porous media

机译:非均质多孔介质多相流不连续控制体积有限元方法

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摘要

We present a new, high-order, control-volume-finite-element (CVFE) method for multiphase porous media flow with discontinuous 1st-order representation for pressure and discontinuous 2nd-order representation for velocity. The method has been implemented using unstructured tetrahedral meshes to discretize space. The method locally and globally conserves mass. However, unlike conventional CVFE formulations, the method presented here does not require the use of control volumes (CVs) that span the boundaries between domains with differing material properties. We demonstrate that the approach accurately preserves discontinuous saturation changes caused by permeability variations across such boundaries, allowing efficient simulation of flow in highly heterogeneous models. Moreover, accurate solutions are obtained at significantly lower computational cost than using conventional CVFE methods. We resolve a long-standing problem associated with the use of classical CVFE methods to model flow in highly heterogeneous porous media.
机译:我们提出了一种新的,高阶,控制体积有限元(CVFE)的多相多孔介质流方法,其中压力的不连续一阶表示和速度的不连续二阶表示。该方法已使用非结构化四面体网格实现离散化。该方法在本地和全局上节省了质量。但是,与常规CVFE配方不同,此处介绍的方法不需要使用跨越具有不同材料特性的磁畴之间边界的控制体积(CV)。我们证明了该方法可以准确地保留由跨边界渗透率变化引起的不连续饱和度变化,从而可以在高度异构的模型中有效模拟流动。此外,与使用常规CVFE方法相比,可以以低得多的计算成本获得准确的解决方案。我们解决了与使用经典CVFE方法建模高度异质多孔介质中的流量相关的一个长期问题。

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