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An Equation-Type Approach for the Numerical Solution of the Partial Differential Equations Governing Transport Phenomena in Porous Media

机译:求解多孔介质中传输现象的偏微分方程数值解的方程式方法

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摘要

A new technique for the numerical solution of the partial differential equations governing transport phenomena in porous media is introduced. In this technique, the governing equations as depicted from the physics of the problem are used without extra manipulations. In other words, there is no need to reduce the number of governing equations by some sort of mathematical manipulations. This technique enables the separation of the physics part of the problem and the solver part, which makes coding more robust and could be used in several other applications with little or no modifications (e.g., multi-phase flow in porous media). In this method, one abandons the need to construct the coefficient matrix for the pressure equation. Alternatively, the coefficients are automatically generated within the solver routine. We show examples of using this technique to solving several flow problems in porous media.
机译:介绍了一种新的数值方法,用于求解控制渗流在多孔介质中的偏微分方程。在这种技术中,无需额外操作即可使用从问题的物理原理描述的控制方程。换句话说,不需要通过某种数学操作来减少控制方程的数量。这项技术可以将问题的物理部分和求解器部分分离开来,这使编码更加健壮,并且可以在几乎没有修改的情况下(例如在多孔介质中进行多相流动)用于其他几种应用。在这种方法中,人们不再需要构造压力方程的系数矩阵。或者,在求解程序中自动生成系数。我们展示了使用此技术解决多孔介质中多个流动问题的示例。

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