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Errors in the upstream mobility scheme for countercurrent two-phase flow in heterogeneous porous media

机译:非均质多孔介质中逆流两相流上游迁移方案中的误差

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In reservoir simulation, the upstream mobility scheme is widely used for calculating fluid flow in porous media and has been shown feasible for flow when the porous medium is homogeneous. In the case of flow in heterogeneous porous media, the scheme has earlier been shown to give erroneous solutions in approximating pure gravity segregation. Here, we show that the scheme may exhibit larger errors when approximating flow in heterogeneous media for flux functions involving both advection and gravity segregation components. Errors have only been found in the case of countercurrent flow. The physically correct solution is approximated by an extension of the Godunov and Engquist-Osher flux. We also present a new finite volume scheme based on the local Lax-Friedrichs flux and test the performance of this scheme in the numerical experiments.
机译:在油藏模拟中,上游迁移率方案被广泛用于计算多孔介质中的流体流量,并已显示出在多孔介质均匀的情况下可行的流动方法。在非均质多孔介质中流动的情况下,该方案已被证明较早地给出了近似纯重力偏析的错误解决方案。在这里,我们表明,该方案可能在涉及对流和重力偏析分量的通量函数的非均质介质中近似流动时表现出较大的误差。仅在逆流情况下才发现错误。物理上正确的解决方案通过Godunov和Engquist-Osher通量的扩展来近似。我们还提出了一种基于局部Lax-Friedrichs通量的新的有限体积方案,并在数值实验中测试了该方案的性能。

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