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A phase field based discrete fracture model (PFDFM) for fluid flow in fractured porous media

机译:基于离散的离散断裂模型(PFDFM),用于裂缝多孔介质中的流体流动

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摘要

In this study we propose a novel phase field based discrete fracture model (PFDFM) to simulate fluid flow in fractured porous media. The common discrete fracture models represent fractures by sharp topology in an explicit way, regardless of using conforming or non-conforming mesh. Inspired by the definition of crack phase field, the sharp fracture topology is treated as a diffusive one in the solution of fluid flow problems, and the integration of fluid flow equation over fractures can be transformed to the one over the matrix. The algorithm to determine the fracture phase field and finite element discretization have been described in detail. The performance of the proposed method is validated against the classic discrete fracture model on several numerical cases in both two and three dimensions. We further investigate the convergency behavior of the proposed method through sensitivity analysis to mesh resolution and fracture parameters. Numerical results are obtained, which demonstrates that the proposed method is accurate, convergent and quite promising for simulating fluid flow in fractured porous media.
机译:在这项研究中,我们提出了一种基于新的基于相场的离散裂缝模型(PFDFM)来模拟裂缝多孔介质中的流体流动。常见的离散断裂模型以明确的方式表示尖锐的拓扑,无论使用符合或非符合网格如何。灵感来自裂缝期场的定义,将急剧裂缝拓扑结构被视为流体流动问题溶液中的扩散一个,并且流体流动方程在裂缝上的积分可以转化为矩阵。确定了确定裂缝相场和有限元离散化的算法。该方法的性能与两种和三维的几个数值壳体上的经典离散断裂模型进行了验证。我们进一步通过对网格分辨率和裂缝参数的灵敏度分析来研究所提出的方法的收敛行为。获得数值结果,表明该方法是准确的,会聚和非常有希望用于模拟裂缝多孔介质中的流体流动。

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