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Projection and partitioned solution for two-phase flow problems

机译:两相流问题的投影和分区解

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摘要

Multiphase flow through porous media is a highly nonlinear process that can be solved nurnerically with the aid of finite elements (FE) in space and finite differences (FD) in time. For an accurate solution much refined FE grids are generally required with the major computational effort consisting of the resolution to the nonlinearity frequently obtained with the classical Picard linearization approach. The efficiency of the repeated solution to the linear systems within each individual time step represents the key to improve the performance of a multiphase flow simulator. The present paper discusses the performance of the projection solvers (GMRES with restart, TFQMR, and BiCGSTAB) for two global schemes based on a different nodal ordering of the unknowns (ORD1 and ORD2) and a scheme (SPLIT) based on the straightforward inversion of the lumped mass matrix which allows for the preliminary elimination and substitution of the unknown saturations. It is shown that SPLIT is between two and three time faster than ORD1 and ORD2, irrespective of the solver used. Copyright (c) 2005 John Wiley & Sons, Ltd.
机译:流过多孔介质的多相流是一个高度非线性的过程,可以借助空间中的有限元(FE)和时间上的有限差(FD)进行神经求解。为了获得精确的解决方案,通常需要大量精制的有限元网格,而大量的计算工作包括对经典皮卡德线性化方法经常获得的非线性分辨率的解决方案。在每个单独的时间步长内重复求解线性系统的效率代表了提高多相流模拟器性能的关键。本文讨论了投影求解器(带重启功能的GMRES,TFQMR和BiCGSTAB)针对两种基于未知点的不同节点排序(ORD1和ORD2)的全局方案和基于简单反演的方案(SPLIT)的性能集总质量矩阵,可以初步消除和替换未知饱和度。结果表明,无论使用哪种求解器,SPLIT的速度都比ORD1和ORD2快2至3倍。版权所有(c)2005 John Wiley&Sons,Ltd.

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