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Numerical Simulation of Coupled Fluid-Solid Systems by Fictitious Boundary and Grid Deformation Methods

In: Numerical Mathematics and Advanced Applications

Author

Listed:
  • Decheng Wan

    (Shanghai Jiao Tong University, School of Naval Architecture, Ocean and Civil Engineering)

  • Stefan Turek

    (University of Dortmund, Institute of Applied Mathematics LS III)

Abstract

Numerical simulations of coupled fluid-rigid solid problems by multigrid fictitious boundary and grid deformation methods are presented. The flow is computed by a special ALE formulation with a multigrid finite element solver. The solid body is allowed to move freely through the computational mesh which is adaptively aligned by a special mesh deformation method such that the accuracy for dealing with the interaction between the fluid and the solid body is highly improved. Numerical examples are provided to show the efficiency of the presented method.

Suggested Citation

  • Decheng Wan & Stefan Turek, 2006. "Numerical Simulation of Coupled Fluid-Solid Systems by Fictitious Boundary and Grid Deformation Methods," Springer Books, in: Alfredo Bermúdez de Castro & Dolores Gómez & Peregrina Quintela & Pilar Salgado (ed.), Numerical Mathematics and Advanced Applications, pages 906-914, Springer.
  • Handle: RePEc:spr:sprchp:978-3-540-34288-5_90
    DOI: 10.1007/978-3-540-34288-5_90
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