An Algorithm for the Strong-Coupling of the Fluid-Structure Interaction Using a Staggered Approach

  • Pedro J
  • Sibanda P
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Abstract

We present a staggered approach for the solution of the piston fluid-structure problem in a time-dependent domain. The one-dimensional fluid flow is modelled using the nonlinear Euler equations. We investigate the time marching fluid-structure interaction and integrate the fluid and structure equations alternately using separate solvers. The Euler equations are written in moving mesh coordinates using the arbitrary Lagrangian-Eulerian (ALE) approach and discretised in space using the finite element method while the structure is integrated in time using an implicit finite difference Newmark-Wilson scheme. The influence of the time lag is studied by comparing two different structural predictors.

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Pedro, J. C., & Sibanda, P. (2012). An Algorithm for the Strong-Coupling of the Fluid-Structure Interaction Using a Staggered Approach. ISRN Applied Mathematics, 2012, 1–14. https://doi.org/10.5402/2012/391974

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