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Control volume function approximation methods and their applications to modeling porous media flow Ⅱ: the black oil model

机译:控制体积函数近似方法及其在多孔介质流场建模中的应用Ⅱ:黑油模型

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This is the second paper of a series where we introduce control volume function approximation (CVFA) methods and present their applications to modeling porous media flow. In the first paper, we introduced these methods to solve linear partial differential equations (PDE) in two-dimensional space and applied them to modeling two-phase flow. In this paper we extend them to solving coupled nonlinear PDEs in three-dimensional space and present their applications to reservoir simulation using the black oil model. The numerical results show that the CVFA methods are efficient and accurate for solving 'crossing bubble point' and three-phase coning problems. For a large model problem with over 20,000 nodes, the computational cost of the CVFA methods is virtually the same as that of the control volume finite element methods, slightly more than that of the 5-point finite difference (FD) method (the 7-point in three dimensions), and less than that of the 9-point FD method (the 11-point in three dimensions).
机译:这是该系列的第二篇论文,我们将介绍控制体积函数逼近(CVFA)方法,并介绍其在多孔介质流建模中的应用。在第一篇论文中,我们介绍了这些方法来求解二维空间中的线性偏微分方程(PDE),并将其应用于建模两相流。在本文中,我们将其扩展到求解三维空间中的耦合非线性PDE,并介绍其在使用黑油模型进行油藏模拟中的应用。数值结果表明,CVFA方法对于解决“穿越气泡点”和三相锥锥问题是有效而准确的。对于具有超过20,000个节点的大型模型问题,CVFA方法的计算成本实际上与控制体积有限元方法的计算成本相同,略高于五点有限差分(FD)方法(7-点在三个维度上),并且小于9点FD方法(在三个维度上为11点)。

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