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A new equi-dimensional fracture model using polyhedral cells for microseismic data sets

机译:一种新的常态裂缝模型,用于微震数据集的多面体电池

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摘要

We present a method for modeling flow in porous media in the presence of complex fracture networks. The approach utilizes the Mimetic Finite Difference (MFD) method. We employ a novel equi-dimensional approach for meshing fractures. By using polyhedral cells we avoid the common challenge in equi-dimensional fracture modeling of creating small cells at the intersection point. We also demonstrate how polyhedra can mesh complex fractures without introducing a large number of cells. We use polyhedra and the MFD method a second time for embedding fracture boundaries in the matrix domain using a "cut-cell" paradigm. The embedding approach has the advantage of being simple and localizes irregular cells to the area around the fractures. It also circumvents the need for conventional mesh generation, which can be challenging when applied to complex fracture geometries. We present numerical results confirming the validity of our approach for complex fracture networks and for different flow models. In our first example, we compare our method to the popular dual porosity technique. Our second example compares our method with directly meshed fractures (single-porosity) for two-phase flow. The third example demonstrates two-phase flow for the case of intersecting ellipsoid fractures in three-dimensions, which are typical in microseismic analysis of fractures. Finally, we demonstrate our method on a two-dimensional fracture network produced from microseismic field data.
机译:我们在复杂的裂缝网络存在下提出了一种用于在多孔介质中建模流动的方法。该方法利用模拟有限差(MFD)方法。我们采用了一种用于啮合裂缝的新型尺寸途径。通过使用多面体电池,我们避免了在交叉点创建小细胞的Equi维裂缝建模中的共同挑战。我们还展示了多篮球如何在不引入大量细胞的情况下啮合复杂的骨折。我们使用Polyhedra和MFD方法第二次使用“切割单元”范式嵌入矩阵域中的断裂边界。嵌入方法具有简单且本地化不规则细胞的优点,对裂缝周围的区域。它还规避了对传统网格产生的需要,当施加到复杂的骨折几何形状时,这可能是具有挑战性的。我们呈现了数值结果,证实了我们对复杂骨折网络和不同流量模型的方法的有效性。在我们的第一个例子中,我们将我们的方法与流行的双孔隙度技术进行比较。我们的第二个例子将我们的方法与直接网状裂缝(单孔隙度)进行了两相流。第三实施例证明了两相流动,用于在三维中与椭圆体骨折交叉的情况,这在裂缝的微震分析中是典型的。最后,我们展示了我们在从微震场数据产生的二维裂缝网络上的方法。

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