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AN ARBITRARY-ORDER SCHEME ON GENERIC MESHES FOR MISCIBLE DISPLACEMENTS IN POROUS MEDIA

机译:多孔介质中可混溶性位移的泛型网格的任意订单方案

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摘要

We design, analyze, and implement an arbitrary-order scheme applicable to generic meshes for a coupled elliptic-parabolic PDE system describing miscible displacement in porous media. The discretization is based on several adaptations of the hybrid-high-order (HHO) method due to Di Pietro, Ern, and Lemaire [Comput. Methods Appl. Math., 14 (2014), pp. 461-472]. The equation governing the pressure is discretized using an adaptation of the HHO method for variable diffusion, while the discrete concentration equation is based on the HHO method for advection-diffusion-reaction problems combined with numerically stable flux reconstructions for the advective velocity that we have derived using the results of Cockburn, Di Pietro, and Ern [ESAIM Math. Model. Numer. Anal., 50 (2016), pp. 635-650]. We perform some rigorous analysis of the method to demonstrate its L-2 stability under the irregular data often presented by reservoir engineering problems and present several numerical tests to demonstrate the quality of the results that are produced by the proposed scheme.
机译:我们设计,分析和实施适用于耦合椭圆抛物型PDE系统的通用网格的任意顺序方案,所述耦合椭圆抛物型PDE系统描述了多孔介质中的混溶性位移。离散化是基于由于DI Pietro,Ern和Lemaire的混合高阶(HHO)方法的若干调整[计算。方法应用。数学。,14(2014),pp.461-472]。控制压力的方程是使用用于可变扩散的HHO方法的调整来离散化,而离散浓度方程基于用于平移 - 扩散 - 反应问题的HHO方法,这些方法与数字稳定的助焊剂重建结合我们衍生的平均速度使用Cockburn,Di Pietro和Ern的结果[Esaim Math。模型。数。肛门。,50(2016),pp。635-650]。我们对该方法进行了一些严格的分析,以展示其在储层工程问题通常呈现的不规则数据下展示其L-2稳定性,并提出了几种数值测试来证明所提出的方案产生的结果的质量。

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