Using multiple levels of parallelism to enhance the performance of domain decomposition solvers

Author:

Giraud L.,Haidar A.,Pralet S.

Publisher

Elsevier BV

Subject

Artificial Intelligence,Computer Graphics and Computer-Aided Design,Computer Networks and Communications,Hardware and Architecture,Theoretical Computer Science,Software

Reference21 articles.

1. A fully asynchronous multifrontal solver using distributed dynamic scheduling;Amestoy;SIAM Journal on Matrix Analysis and Applications,2001

2. Iterative methods for the solution of elliptic problems on regions partitioned into substructures;Bjørstad;SIAM Journal of Numerical Analysis,1986

3. ScaLAPACK Users’ Guide;Blackford,1997

4. Variational formulation and algorithm for trace operator in domain decomposition calculations;Bourgat,1989

5. The construction of preconditioners for elliptic problems by substructuring I;Bramble;Mathematical Computation,1986

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2. Euro-Par 2016: Parallel Processing Workshops;Lecture Notes in Computer Science;2017

3. Task-Based Sparse Hybrid Linear Solver for Distributed Memory Heterogeneous Architectures;Euro-Par 2016: Parallel Processing Workshops;2017

4. Hierarchical Krylov and nested Krylov methods for extreme-scale computing;Parallel Computing;2014-01

5. A SBS-BD based solver for domain decomposition in BE methods;Engineering Analysis with Boundary Elements;2013-10

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