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Multiscale Finite Volume Method for Discrete Fracture Modeling with Unstructured Grids

机译:无尺寸有限体积法与非结构化网格的离散骨折建模

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A multiscale method for Discrete Fracture Modeling (DFM) using unstructured grids is developed. The fine-scale discrete system is obtained by imposing tetrahedron (triangular for 2D domains) shaped grid cells, while lower-dimensional fractures are imposed at the grid interfaces. The DFM approach is then used to describe the transmissibility coefficients for all the interfaces, including those with the lower-dimensional fractures. On this fine-scale discrete system, a new algebraic multiscale formulation is developed, which first imposes two sets of coarseand dual-coarse grids. The former grid is essential for conservative multiscale formulations, while the second one is used for the calculation of local multiscale basis functions. The coarse- scale partitioning of the fracture and matrix domains is flexible and totally independent. Moreover, the multiscale basis functions are constructed for both the matrix and fracture domains. By construction, the basis functions are a partition of unity. For 2D and 3D test cases, the performance of the multiscale method is systematically assessed. It is shown that the method (with no multiscale iterations) provides accurate results, even for complex fractured systems. The presented multiscale method is a promising framework for real-field application of DFM models.
机译:开发了使用非结构化网格的离散裂缝建模(DFM)的多尺度方法。通过施加四面体(三角形用于2D域)形状的网格细胞来获得细小的离散系统,而在网格界面处施加低维骨折。然后使用DFM方法来描述所有接口的传输系数,包括具有较低维度裂缝的帧间的变速系数。在这种微尺的离散系统上,开发了一种新的代数多尺度配方,首先强加了两组拟商双粗网格。前网格对于保守的多尺度配方至关重要,而第二个网格用于计算局部多尺度基函数。裂缝和基质结构域的粗糙度分区是灵活的和完全独立的。此外,为矩阵和裂缝域构建多尺度基函数。通过施工,基础函数是统一的分区。对于2D和3D测试用例,系统评估了多尺度方法的性能。结果表明,即使对于复杂的裂缝系统,该方法(没有多尺度迭代)也提供了准确的结果。呈现的MultiScale方法是DFM模型的实际应用的有希望的框架。

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