Preconditioning a Fluid--Structure Interaction Problem Using Monolithic and Block Domain Decomposition Methods for the Fluid

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Hauptverfasser: Klawonn, Axel, Knepper, Jascha, Saßmannshausen, Lea
Format: Preprint
Veröffentlicht: 2025
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author Klawonn, Axel
Knepper, Jascha
Saßmannshausen, Lea
author_facet Klawonn, Axel
Knepper, Jascha
Saßmannshausen, Lea
contents A fluid-structure interaction (FSI) problem is solved via a monolithic coupling of the fluid, structure, and geometry subproblems. The iterative GMRES solver is accelerated with the FaCSI block preconditioner. In the FaCSI factorization, the fluid subproblem is approximated using either a monolithic preconditioner or the block preconditioner SIMPLE. Two-level overlapping Schwarz methods are then used to approximate the arising inverses. The robustness and scalability of the monolithic and SIMPLE preconditioners are compared for a realistic patient-specific artery. The results indicate that the monolithic preconditioning of the fluid subproblem performs better than the SIMPLE approach. Different flow rates are tested and parallel strong scaling has been evaluated.
format Preprint
id arxiv_https___arxiv_org_abs_2512_01887
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Preconditioning a Fluid--Structure Interaction Problem Using Monolithic and Block Domain Decomposition Methods for the Fluid
Klawonn, Axel
Knepper, Jascha
Saßmannshausen, Lea
Numerical Analysis
65N55, 65F08, 92C10
A fluid-structure interaction (FSI) problem is solved via a monolithic coupling of the fluid, structure, and geometry subproblems. The iterative GMRES solver is accelerated with the FaCSI block preconditioner. In the FaCSI factorization, the fluid subproblem is approximated using either a monolithic preconditioner or the block preconditioner SIMPLE. Two-level overlapping Schwarz methods are then used to approximate the arising inverses. The robustness and scalability of the monolithic and SIMPLE preconditioners are compared for a realistic patient-specific artery. The results indicate that the monolithic preconditioning of the fluid subproblem performs better than the SIMPLE approach. Different flow rates are tested and parallel strong scaling has been evaluated.
title Preconditioning a Fluid--Structure Interaction Problem Using Monolithic and Block Domain Decomposition Methods for the Fluid
topic Numerical Analysis
65N55, 65F08, 92C10
url https://arxiv.org/abs/2512.01887