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Adaptive multipreconditioned FETI: Scalability results and robustness assessment

  • Christophe Bovet
  • , Augustin Parret-Fréaud
  • , Nicole Spillane
  • , Pierre Gosselet
  • MSSMat, UMR 8579 CNRS-Ecole Centrale Paris, Grande Voie des Vignes
  • ONERA Office National d'Etudes et Recherches Aerospatiales
  • Computational Solid Mechanics
  • Université Paris-Saclay

Research output: Contribution to journalArticlepeer-review

Abstract

The purpose of this article is to assess the adaptive multipreconditioned FETI solvers (AMPFETI) on real industrial problems and hardware. The multipreconditioned FETI algorithm (first introduced as Simultaneous FETI (Gosselet et al., 2015) is a non-overlapping domain decomposition method which exhibits good robustness properties without requiring the explicit knowledge of the original partial differential equation, or any a priori analysis of the algebraic system through eigenvalues problems. Multipreconditioned FETI solves critical problems in significantly fewer iterations than classical FETI but each iteration involves a larger computational effort. An adaptive strategy (known as the adaptive multipreconditioned conjugate gradient algorithm (Spillane, 2016) has been proposed to achieve balance between robustness and efficiency and we will observe that it provides an efficient solver for the problems considered here.

Original languageEnglish
Pages (from-to)1-20
Number of pages20
JournalComputers and Structures
Volume193
DOIs
Publication statusPublished - 1 Dec 2017
Externally publishedYes

Keywords

  • Adaptive multipreconditioning
  • Domain decomposition
  • FETI
  • Krylov subspace methods
  • Multipreconditioning

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