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Adaptive mixed finite element methods for Darcy flow in fractured porous media

机译:裂隙多孔介质达西渗流的自适应混合有限元方法

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摘要

In this paper, we propose adaptive mixed finite element methods for simulating the single-phase Darcy flow in two-dimensional fractured porous media. The reduced model that we use for the simulation is a discrete fracture model coupling Darcy flows in the matrix and the fractures, and the fractures are modeled by one-dimensional entities. The Raviart-Thomas mixed finite element methods are utilized for the solution of the coupled Darcy flows in the matrix and the fractures. In order to improve the efficiency of the simulation, we use adaptive mixed finite element methods based on novel residual-based a posteriori error estimators. In addition, we develop an efficient upscaling algorithm to compute the effective permeability of the fractured porous media. Several interesting examples of Darcy flow in the fractured porous media are presented to demonstrate the robustness of the algorithm.
机译:在本文中,我们提出了用于模拟二维裂缝多孔介质中单相达西流的自适应混合有限元方法。我们用于模拟的简化模型是耦合矩阵中的Darcy流和裂缝的离散裂缝模型,并且裂缝是由一维实体建模的。 Raviart-Thomas混合有限元方法用于求解矩阵和裂缝中耦合的达西流。为了提高仿真效率,我们使用基于新颖残差的后验误差估计器的自适应混合有限元方法。此外,我们开发了一种有效的放大算法来计算压裂多孔介质的有效渗透率。给出了破裂多孔介质中达西流的几个有趣例子,以证明该算法的鲁棒性。

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