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A force-balanced control volume finite element method for multi-phase porous media flow modelling

机译:多相多孔介质流场模拟的力平衡控制体积有限元方法

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摘要

A novel method for simulating multi-phase flow in porous media is presented. The approach is based on a control volume finite element mixed formulation and new force-balanced finite element pairs. The novelty of the method lies in (i) permitting both continuous and discontinuous description of pressure and saturation between elements; (ii) the use of arbitrarily high-order polynomial representation for pressure and velocity and (iii) the use of high-order flux-limited methods in space and time to avoid introducing non-physical oscillations while achieving high-order accuracy where and when possible. The model is initially validated for two-phase flow. Results are in good agreement with analytically obtained solutions and experimental results. The potential of this method is demonstrated by simulating flow in a realistic geometry composed of highly permeable meandering channels.
机译:提出了一种模拟多孔介质中多相流的新方法。该方法基于控制体积有限元混合公式和新的力平衡有限元对。该方法的新颖性在于(i)允许连续和不连续地描述元件之间的压力和饱和度; (ii)使用任意高阶多项式表示压力和速度,以及(iii)在时空上使用高阶通量限制方法以避免引入非物理振荡,同时在何时何地实现高阶精度可能。最初对模型进行了两相流验证。结果与分析获得的解决方案和实验结果高度吻合。通过在由高渗透性曲折通道组成的逼真的几何形状中模拟流动,证明了该方法的潜力。

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