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首页> 外文期刊>International journal of numerical analysis and modeling >APPLICATION OF PARALLEL AGGREGATION-BASED MULTIGRID TO HIGH RESOLUTION SUBSURFACE FLOW SIMULATIONS
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APPLICATION OF PARALLEL AGGREGATION-BASED MULTIGRID TO HIGH RESOLUTION SUBSURFACE FLOW SIMULATIONS

机译:并行聚合的应用在高分辨率次数流模拟中的应用

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In this paper we assess the parallel efficiency issues for simulating single phase subsurface flow in porous media, where the permeability tensor contains anisotropy rotated with certain angles or severe discontinuity. Space variables are discretized using multi-points flux approximations and the pressure equations are solved by aggregation-based algebraic multigrid method. The involved issues include the domain decomposition of space discretization and coarsening, smoothing, the coarsest grid solving of multigrid solving steps. Numerical experiments exhibit that the convergence of the multigrid algorithm suffers from the parallel implementation. The linear system at the coarsest grid is solved and by various iterative methods and the experimental results show that the parallel efficiency is less attenuated when sparse approximate inverse preconditioning conjugate gradient is used.
机译:在本文中,我们评估了用于模拟多孔介质中的单相面积流量的并行效率问题,其中渗透性张量含有各向异性,其具有某些角度或严重的不连续性旋转。 空间变量使用多点通量近似离散化,并且压力方程通过基于聚合的代数MultiGrigrid方法解决。 所涉及的问题包括空间离散化和粗化,平滑的域分解,粗糙的栅格求解步骤。 数值实验表明,多档算法的收敛性遭受并行实现。 粗栅格的线性系统被解决并通过各种迭代方法,并且实验结果表明,当使用稀疏近似反向预处理梯度时,实验结果表明并行效率较小。

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