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首页> 外文期刊>GEM-International Journal on Geomathematics >Advanced computation of steady-state fluid flow in Discrete Fracture-Matrix models: FEM–BEM and VEM–VEM fracture-block coupling
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Advanced computation of steady-state fluid flow in Discrete Fracture-Matrix models: FEM–BEM and VEM–VEM fracture-block coupling

机译:离散骨折 - 矩阵模型中稳态流体流动的高级计算:FEM-BEM和VEM-VEM骨折耦合

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In this note the issue of fluid flow computation in a Discrete Fracture-Matrix (DFM) model is addressed. In such a model, a network of percolative fractures delimits porous matrix blocks. Two frameworks are proposed for the coupling between the two media. First, a FEM–BEM technique is considered, in which finite elements on non-conforming grids are used on the fractures, whereas a boundary element method is used on the blocks; the coupling is pursued by a PDE-constrained optimization formulation of the problem. Second, a VEM–VEM technique is considered, in which a 2D and a 3D virtual element method are used on the fractures and on the blocks, respectively, taking advantage of the flexibility of VEM in using arbitrary meshes in order to ease the meshing process and the consequent enforcement of the matching conditions on fractures and blocks.
机译:在本发明中,解决了离散骨折 - 矩阵(DFM)模型中的流体流量计算的问题。 在这种模型中,渗透裂缝网络限定多孔基质块。 提出了两个媒体之间的耦合的两个框架。 首先,考虑一种FEM-BEM技术,其中在裂缝上使用非符合网格上的有限元件,而在块上使用边界元件方法; 通过对问题的PDE受限优化制定来追求耦合。 其次,考虑了一种VEM-VEM技术,其中分别在裂缝和块上使用2D和3D虚拟元素方法,以利用使用任意网格的VEM的灵活性,以便于啮合过程 并因此执行骨折和块的匹配条件。

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