A one-shot overlapping Schwarz method for component-based model reduction: application to nonlinear elasticity

We propose a component-based (CB) parametric model order reduction (pMOR) formulation for parameterized nonlinear elliptic partial differential equations (PDEs) based on overlapping subdomains. Our approach reads as a constrained optimization statement that penalizes the jump at the components’ inte...

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Published inComputer methods in applied mechanics and engineering Vol. 404; p. 115786
Main Authors Iollo, Angelo, Sambataro, Giulia, Taddei, Tommaso
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.02.2023
Elsevier
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ISSN0045-7825
1879-2138
DOI10.1016/j.cma.2022.115786

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Abstract We propose a component-based (CB) parametric model order reduction (pMOR) formulation for parameterized nonlinear elliptic partial differential equations (PDEs) based on overlapping subdomains. Our approach reads as a constrained optimization statement that penalizes the jump at the components’ interfaces subject to the approximate satisfaction of the PDE in each local subdomain. Furthermore, the approach relies on the decomposition of the local states into a port component – associated with the solution on interior boundaries – and a bubble component that vanishes at ports: since the bubble components are uniquely determined by the solution value at the corresponding port, we can recast the constrained optimization statement into an unconstrained statement, which reads as a nonlinear least-squares problem and can be solved using the Gauss–Newton method. We present thorough numerical investigations for a two-dimensional neo-Hookean nonlinear mechanics problem to validate our method; we further discuss the well-posedness of the mathematical formulation and the a priori error analysis for linear coercive problems.
AbstractList We propose a component-based (CB) parametric model order reduction (pMOR) formulation for parameterized nonlinear elliptic partial differential equations (PDEs) based on overlapping subdomains. Our approach reads as a constrained optimization statement that penalizes the jump at the components’ interfaces subject to the approximate satisfaction of the PDE in each local subdomain. Furthermore, the approach relies on the decomposition of the local states into a port component – associated with the solution on interior boundaries – and a bubble component that vanishes at ports: since the bubble components are uniquely determined by the solution value at the corresponding port, we can recast the constrained optimization statement into an unconstrained statement, which reads as a nonlinear least-squares problem and can be solved using the Gauss–Newton method. We present thorough numerical investigations for a two-dimensional neo-Hookean nonlinear mechanics problem to validate our method; we further discuss the well-posedness of the mathematical formulation and the a priori error analysis for linear coercive problems.
ArticleNumber 115786
Author Iollo, Angelo
Sambataro, Giulia
Taddei, Tommaso
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  surname: Taddei
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Keywords 41A45
Parameterized partial differential equations
Model order reduction
Alternating Schwarz method
35J15
65N30
Overlapping domain decomposition
parameterized partial differential equations
model order reduction
alternating Schwarz method
overlapping domain decom- position
Language English
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Snippet We propose a component-based (CB) parametric model order reduction (pMOR) formulation for parameterized nonlinear elliptic partial differential equations...
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elsevier
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StartPage 115786
SubjectTerms Alternating Schwarz method
Mathematics
Model order reduction
Numerical Analysis
Overlapping domain decomposition
Parameterized partial differential equations
Title A one-shot overlapping Schwarz method for component-based model reduction: application to nonlinear elasticity
URI https://dx.doi.org/10.1016/j.cma.2022.115786
https://hal.science/hal-03910506
Volume 404
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