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Analysis and Acceleration of a Fluid-Structure Interaction Coupling Scheme

In: Numerical Mathematics and Advanced Applications 2009

Author

Listed:
  • Michael R. Dörfel

    (Chair for Numerical Analysis, Technische Universität München, Center for Mathematical Sciences)

  • Bernd Simeon

    (Chair for Numerical Analysis, Technische Universität München, Center for Mathematical Sciences)

Abstract

The aim of this contribution is to shed new light on the intrinsic properties of fluid-structure coupling methods. By studying the Dirichlet–Neumann coupling for a one-dimensional model problem, it is shown that the masses at the interface can be shifted to accelerate the convergence of the extensively applied Gauss–Seidel-type iteration. Furthermore, the applied time integration as well as the size of the spatial grid adjacent to the interface influence the convergence behavior. Numerical studies confirm the results.

Suggested Citation

  • Michael R. Dörfel & Bernd Simeon, 2010. "Analysis and Acceleration of a Fluid-Structure Interaction Coupling Scheme," Springer Books, in: Gunilla Kreiss & Per Lötstedt & Axel Målqvist & Maya Neytcheva (ed.), Numerical Mathematics and Advanced Applications 2009, pages 307-315, Springer.
  • Handle: RePEc:spr:sprchp:978-3-642-11795-4_32
    DOI: 10.1007/978-3-642-11795-4_32
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