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首页> 外文期刊>SIAM Journal on Scientific Computing >DUAL VIRTUAL ELEMENT METHOD FOR DISCRETE FRACTURES NETWORKS
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DUAL VIRTUAL ELEMENT METHOD FOR DISCRETE FRACTURES NETWORKS

机译:离散裂缝网络的双虚拟元素方法

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Discrete fracture networks is a key ingredient in the simulation of physical processes which involve fluid flow in the underground, when the surrounding rock matrix is considered impervious. In this paper we present two different models to compute the pressure field and Darcy velocity in the system. The first allows a normal flow out of a fracture at the intersections, while the second grants also a tangential flow along the intersections. For the numerical discretization, we use the mixed virtual element method as it is known to handle grid elements of, almost, any arbitrary shape. The flexibility of the discretization allows us to loosen the requirements on grid construction, and thus significantly simplify the flow discretization compared to traditional discrete fracture network models. A coarsening algorithm, from the algebraic multigrid literature, is also considered to further speed up the computation. The performance of the method is validated by numerical experiments.
机译:离散骨折网络是在涉及地下涉及地下流体流动的物理过程中的关键成分,当围岩基质被认为是不透水的。 在本文中,我们提出了两种不同的模型来计算系统中的压力场和达西速度。 首先允许在交叉点处的裂缝中的正常流出,而第二授予沿交叉点的切向流。 为了数值离散化,我们使用混合的虚拟元方法,因为已知处理几乎所有任意形状的网格元素。 离散化的灵活性使我们能够松开电网结构的要求,从而显着简化了与传统的离散骨折网络模型相比的流动离散化。 来自代数多重资源文献的粗化算法也被认为进一步加速计算。 通过数值实验验证该方法的性能。

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