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Fully Algebraic Two-Level Overlapping Schwarz Preconditioners for Elasticity Problems

机译:完全代数两级重叠施瓦茨预处理器,适用于弹性问题

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Different parallel two-level overlapping Schwarz preconditioners with Generalized Dryja-Smith-Widlund (GDSW) and Reduced dimension GDSW (RGDSW) coarse spaces for elasticity problems are considered. GDSW type coarse spaces can be constructed from the fully assembled system matrix, but they additionally need the index set of the interface of the corresponding nonoverlapping domain decomposition and the null space of the elasticity operator, i.e., the rigid body motions. In this paper, fully algebraic variants, which are constructed solely from the uniquely distributed system matrix, are compared to the classical variants which make use of this additional information; the fully algebraic variants use an approximation of the interface and an incomplete algebraic null space. Nevertheless, the parallel performance of the fully algebraic variants is competitive compared to the classical variants for a stationary homogeneous model problem and a dynamic heterogenous model problem with coefficient jumps in the shear modulus; the largest parallel computations were performed on 4096 MPI (Message Passing Interface) ranks. The parallel implementations are based on the Trilinos package FROSch.
机译:考虑了具有广义Dryja-Smith-Widlund(GDSW)和减小的尺寸GDS的不同平行两级重叠施瓦茨预处理器,以及用于弹性问题的尺寸GDSW(RGDSW)粗糙空间。 GDSW型粗糙空间可以由完全组装的系统矩阵构成,但是它们另外需要相应的非凸起域分解的界面的索引集和弹性操作员的零空格,即刚体运动。在本文中,与唯一分布式系统矩阵完全由唯一分布式系统矩阵构造的完全代数变体与使用此附加信息的经典变体进行比较;完全代数变体使用界面的近似值和不完整的代数空空间。然而,与固定均质模型问题的典型变体和剪切模量中系数跳跃的动态异常模型问题相比,完全代数变体的平行性能是竞争力的竞争力。在4096 MPI(消息传递接口)等级执行最大的并行计算。并行实现基于Trilinos封装Frosch。

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