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A high-order, fully coupled, upwind, compact discontinuous Galerkin method for modeling of viscous fingering in compressible porous media

机译:用于可压缩多孔介质中粘性指状建模的高阶,全耦合,迎风,紧凑不连续伽勒金方法

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摘要

We present a new approach for high-fidelity compressible porous media simulations. Our method is based on a fully coupled, upwind, high-order discontinuous Galerkin formulation of the equations of miscible displacement transport. A key feature of the proposed method is the high level of flexibility to compute complex subsurface geometries, maintaining full order of accuracy. The present formulation solves pressure and transport equations in a fully coupled fashion and, as a result, can capture the strong interaction between pressure and concentrations of injected components in highly compressible media. The proposed method also shows very low sensitivity to mesh orientation, in contrast with classical finite volume approximations used in porous media flow simulations. The robustness and accuracy of the method are demonstrated in a number of challenging compressible and incompressible multiphase flow problems. Numerical simulations also reveal interesting phenomena associated with high pore compressibility, such as the reduction of the growth rate of viscous fingers and the alteration of flow patterns near impermeable obstacles. Additional computations performed with an anisotropic permeability tensor reveal that, somewhat against intuition, viscous fingers have a preferential growth along the direction of low permeability.
机译:我们提出了一种高保真可压缩多孔介质模拟的新方法。我们的方法基于混溶位移输运方程的完全耦合,迎风,高阶不连续Galerkin公式。所提出方法的关键特征是高度的灵活性,可以计算复杂的地下几何形状,并保持完整的精度等级。本配方以完全耦合的方式解决了压力和输运方程,因此,可以捕获压力与高度可压缩介质中注入组分的浓度之间的强相互作用。与多孔介质流动模拟中使用的经典有限体积近似法相比,该方法还显示出对网格方向的极低灵敏度。该方法的鲁棒性和准确性在许多具有挑战性的可压缩和不可压缩的多相流问题中得到了证明。数值模拟还揭示了与高孔隙可压缩性相关的有趣现象,例如粘性指状物的生长速率降低以及不可渗透障碍物附近的流型改变。使用各向异性渗透率张量执行的其他计算显示,在某种程度上,与直觉相反,粘性手指在低渗透率方向上具有优先增长。

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