Exploiting high-contrast Stokes preconditioners to efficiently solve incompressible fluid-structure interaction problems

05/15/2023
by   Michał Wichrowski, et al.
0

In this work, we develop a new algorithm to solve large-scale incompressible time-dependent fluid–structure interaction (FSI) problems using a matrix-free finite element method in arbitrary Lagrangian–Eulerian (ALE) frame of reference. We derive a semi-implicit time integration scheme which improves the geometry-convective explicit (GCE) scheme for problems involving the interaction between incompressible hyperelastic solids and incompressible fluids. The proposed algorithm relies on the reformulation of the time-discrete problem as a generalized Stokes problem with strongly variable coefficients, for which optimal preconditioners have recently been developed. The resulting algorithm is scalable, optimal, and robust: we test our implementation on model problems that mimic classical Turek benchmarks in two and three dimensions, and investigate timing and scalability results.

READ FULL TEXT
research
08/10/2020

A time-dependent FEM-BEM coupling method for fluid-structure interaction in 3d

We consider the well-posedness and a priori error estimates of a 3d FEM-...
research
02/15/2022

Monolithic multigrid for implicit Runge-Kutta discretizations of incompressible fluid flow

Most research on preconditioners for time-dependent PDEs has focused on ...
research
02/06/2020

An unfitted Eulerian finite element method for the time-dependent Stokes problem on moving domains

We analyse a Eulerian Finite Element method, combining a Eulerian time-s...
research
04/21/2020

A posteriori error analysis for a Lagrange multiplier method for a Stokes/Biot fluid-poroelastic structure interaction model

In this work we develop an a posteriori error analysis of a conforming m...
research
03/28/2018

Theory and computation of electromagnetic fields and thermomechanical structure interaction for systems undergoing large deformations

The governing equations for electromagneto-thermomechanical systems are ...
research
03/31/2021

Eulerian simulation of complex suspensions and biolocomotion in three dimensions

We present a numerical method specifically designed for simulating three...

Please sign up or login with your details

Forgot password? Click here to reset