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A New Finite-Volume Approach to Efficient Discretization on Challenging Grids

机译:一种新的有限体积方法,以有效的挑战网格

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MPFA methods were introduced to solve control-volume formulations on general simulation grids for porous media flow. While these methods are general in the sense that they may be applied to any grid, their convergence properties vary. An important property for multiphase flow is the monotonicity of the numerical elliptic operator. In a recent paper, conditions for monotonicity on quadrilateral grids have been developed. These conditions indicate that MPFA formulations which lead to smaller flux stencils are desirable for grids with high aspect ratio or severe skewness and for media with strong anisotropy or strong heterogeneity. The ideas were recently pursued in where the L-method was introduced for general media in 2D. For homogeneous media and uniform grid, this method has four-point flux stencils and seven-point cell stencils in two dimensions. The reduced stencils appear as a consequence of adapting the method to the closest neighboring cells Here, we extend the ideas for discretization on 3D grids, and ideas and results are shown for both conforming and non- conforming grids. The ideas are particularly desirable for simulation grids which contain faults and local grid refinement. We present numerical results herein which include convergence results for single phase flow on challenging grids in 2D and 3D, and some simple two-phase results. Also, we compare the L-method with the O-method.
机译:引入了MPFA方法以解决对多孔介质流动的一般模拟网格上的控制体积制剂。虽然这些方法是一般的,但是它们可以应用于任何网格,但它们的会聚特性变化。多相流动的重要特性是数值椭圆形算子的单调性。在最近的一篇论文中,已经开发了在四边形网格上的单调性的条件。这些条件表明,导致较小的磁通模板的MPFA制剂对于具有高纵横比或严重偏振的栅格和具有强大各向异性或强异质性的培养基。最近思考L-Method在2D中为一般媒体引入L-Mactions。对于均匀介质和均匀的网格,该方法具有四点磁通模板和七分池模板,有两个维度。由于将方法调整到最近的相邻小区来说,减少的模板出现,我们将思想扩展到3D网格上的离散化,并且显示了符合和非符合网格的思想和结果。这些想法对于包含故障和本地网格细化的模拟网格特别适合。我们呈现本文的数值结果,包括在2D和3D的具有挑战网格上的单相流的收敛结果,以及一些简单的两相结果。此外,我们将L-Methe方法与O-Method进行比较。

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