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A Discontinuous Overlapping Control Volume Finite Element Method for Multi-Phase Porous Media Flow Using Dynamic Unstructured Mesh Optimization

机译:使用动态非结构化网格优化的多相多孔介质流量的不连续重叠控制量有限元方法

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We present a new,high-order,control-volume-finite-element(CVFE)method with discontinuous Nth- order representation for pressure and(N 1)th-order for velocity.The method conserves mass and ensures that the extended Darcy equations for multi-phase flow are exactly enforced,but does not require the use of control volumes(CVs)that span domain boundaries.We demonstrate that the approach,amongst other features,accurately preserves sharp saturation changes associated with high aspect ratio geologic features such as fractures and mudstones,allowing efficient simulation of flow in highly heterogeneous models. Moreover,in conjunction with dynamic mesh optimization,in which the mesh adapts in space and time to key solution fields such as pressure,velocity or saturation whilst honoring a surface-based represen- tation of the underlying geologic heterogeneity,accurate solutions are obtained at significantly lower computational cost than an equivalent fine,fixed mesh and conventional CVFE methods.The work presented is significant for two reasons.First,it resolves a long-standing problem associated with the use of classical CVFE methods to model flow in highly heterogeneous porous media;second,it reduces computational cost/increases solution accuracy through the use of dynamic mesh optimization without compromising parallelization.
机译:我们提出了一种新的,高阶控制体积有限元(CVFE)方法,具有不连续的N阶表示压力和(n 1)速度的速度。方法保存质量并确保扩展的达西方程对于多相流程完全强制执行,但不需要使用跨域边界的控制卷(CVS)。我们证明了这种方法,在其他特征中,准确地保留与高纵横比地质特征相关的尖锐饱和变化,例如骨折和泥岩,允许高效模拟流动的高度异质模型。此外,与动态网格优化结合,其中网格在空间和时间内适应诸如压力,速度或饱和度的键溶液场,同时掌握基于表面的地质异质性的基于表面的代表,在显着获得精确的溶液较低的计算成本低于等效的细,固定网格和传统的CVFE方法。由于两个原因,所呈现的工作是显着的。首先,它决定了与使用经典CVFE方法在高度异质多孔介质中模拟流动的长期问题。其次,它通过使用动态网格优化来降低计算成本/提高解决方案精度,而不会影响并行化。

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