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Numerical simulation of fracture flow with a mixed-hybrid FEM stochastic discrete fracture network model

机译:混合动力有限元随机离散裂隙网络模型的裂隙流数值模拟

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We introduce a discrete fracture network model of stationary Darcy flow in fractured rocks. We approximate the fractures by a network of planar circle disks, which is generated on the basis of statistical data obtained from field measurements. We then discretize this network into a mesh consisting of triangular elements placed in three-dimensional space. We use geometrical approximations in fracture planes, which allow for a significant simplification of the final triangular meshes. We consider two-dimensional Darcy flow in each fracture. In order to accurately simulate the channeling effect, we assign to each triangle an aperture defining its hydraulic permeability. For the discretization we use the lowest order Ravi art-Thomas mixed finite element method. This method gives quite an accurate velocity field, which is computed directly and which satisfies the mass balance on each triangular element. We demonstrate the use of this method on a model problem with a known analytical solution and describe the generation and triangulation of the fracture network and the computation of fracture flow for a particular real situation.
机译:我们介绍了裂隙岩石中固定的达西流动的离散裂隙网络模型。我们通过平面圆盘网络对裂缝进行近似,该网络是根据从现场测量获得的统计数据生成的。然后,我们将此网络离散化为一个网格,该网格由放置在三维空间中的三角形元素组成。我们在断裂平面中使用几何近似,这可以极大简化最终的三角形网格。我们考虑每个裂缝中的二维达西流。为了准确模拟通道效应,我们为每个三角形分配一个定义其水力渗透率的孔。对于离散化,我们使用最低阶Ravi art-Thomas混合有限元方法。该方法给出了相当精确的速度场,该速度场可以直接计算,并且满足每个三角形元素上的质量平衡。我们用已知的解析解证明了该方法在模型问题上的使用,并描述了特定实际情况下裂缝网络的生成和三角剖分以及裂缝流的计算。

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