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A new estimation of equivalent matrix block sizes in fractured media with two-phase flow applications in dual porosity models

机译:双孔隙率模型中具有两相流应用的裂缝介质中等效矩阵块尺寸的新估计

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摘要

Single and multiphase flows in fractured porous media at the scale of natural reservoirs are often handled by resorting to homogenized models that avoid the heavy computations associated with a complete discretization of both fractures and matrix blocks. For example, the two overlapping continua (fractures and matrix) of a dual porosity system are coupled by way of fluid flux exchanges that deeply condition flow at the large scale. This characteristic is a key to realistic flow simulations, especially for multiphase flow as capillary forces and contrasts of fluid mobility compete in the extraction of a fluid from a capacitive matrix then conveyed through the fractures. The exchange rate between fractures and matrix is conditioned by the so-called mean matrix block size which can be viewed as the size of a single matrix block neighboring a single fracture within a mesh of a dual porosity model.
机译:在天然储存器的等级中的裂缝多孔介质中的单个和多相流动通常通过借助于均匀化的模型来处理,以避免与裂缝和矩阵块的完全离散化相关的重计算。 例如,双孔隙率系统的两个重叠连续(裂缝和基质)通过流体磁通交换的方式耦合,即在大规模中的深深地流动。 该特征是现实流动模拟的关键,特别是对于多相流,作为毛细力和流体迁移率的对比度在来自电容矩阵的流体的提取中,然后通过裂缝输送。 裂缝和矩阵之间的汇率由所谓的平均矩阵块大小调节,其可以被视为与双孔隙模型的网格内相邻的单个裂缝相邻的单个矩阵块的尺寸。

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