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BDDC for mixed-hybrid formulation of flow in porous media with combined mesh dimensions

机译:BDDC用于组合孔尺寸的多孔介质中流动的混合混合配方

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We extend the balancing domain decomposition by constraints (BDDC) method to flows in porous media discretised by mixed-hybrid finite elements with combined mesh dimensions. Such discretisations appear when major geological fractures are modelled by one-dimensional or two-dimensional elements inside three-dimensional domains. In this set-up, the global problem and the substructure problems have a symmetric saddle-point structure, containing a 'penalty' block due to the combination of meshes. We show that the problem can be reduced by means of iterative substructuring to an interface problem, which is symmetric and positive definite. The interface problem can thus be solved by conjugate gradients with the BDDC method as a preconditioner. A parallel implementation of this algorithm is incorporated into an existing software package for subsurface flow simulations. We study the performance of the iterative solver on several academic and real-world problems. Numerical experiments illustrate its efficiency and scalability. Copyright (C) 2015 John Wiley & Sons, Ltd.
机译:我们通过约束(BDDC)方法将平衡域分解扩展到由组合网格尺寸的混合混合有限元离散化的多孔介质中的流动。当用三维域内的一维或二维元素模拟主要地质裂缝时,就会出现这种离散。在这种设置中,全局问题和子结构问题具有对称的鞍点结构,由于网格的组合,其中包含“惩罚”块。我们表明,可以通过迭代构造子接口到对称和正定的接口问题来减少问题。因此可以通过以BDDC方法为前提的共轭梯度来解决界面问题。该算法的并行实现已合并到用于地下流动模拟的现有软件包中。我们在一些学术和现实问题上研究迭代求解器的性能。数值实验表明了其效率和可扩展性。版权所有(C)2015 John Wiley&Sons,Ltd.

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