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A two dimensional numerical study of viscous fingering in a porous medium

机译:多孔介质中粘性指法的二维数值研究

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In this paper, a two dimensional numerical study of viscous fingering in a porous medium is presented. A two-phase Newtonian fluid flow at low Reynolds numbers is considered. Surface tension between the two fluids is accounted for by use of the Young-Laplace equation. A direct boundary integral formulation is used for the basis of the numerical method with C1 continuous elements used for discretization. A number of time stepping and re-meshing strategies is discussed. Viscous fingering is studied as a function of the relative viscosity of the two fluids, the porosity of the formation, and the interfacial surface tension. It is found that re-meshing schemes must be used to obtain stable evolution of the interface and accurate results.
机译:本文提出了多孔介质中粘性指状的二维数值研究。考虑低雷诺数的两相牛顿流体流动。两种流体之间的表面张力通过使用Young-Laplace方程来解决。使用直接边界积分公式作为数值方法的基础,并使用C1个连续元素进行离散化。讨论了许多时间步长和重新网格化策略。根据两种流体的相对粘度,地层的孔隙度和界面表面张力来研究粘性指法。发现必须使用重新网格划分方案来获得稳定的接口演变和准确的结果。

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