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Partitioned Fluid-Structure Coupling and Vortex Simulation on HPC-Systems

In: High Performance Computing in Science and Engineering '08

Author

Listed:
  • Felix Lippold

    (Universität Stuttgart, Institute of Fluid Mechanics and Hydraulic Machinery)

  • Eugen Ohlberg

    (Universität Stuttgart, Institute of Fluid Mechanics and Hydraulic Machinery)

  • Albert Ruprecht

    (Universität Stuttgart, Institute of Fluid Mechanics and Hydraulic Machinery)

Abstract

Summary In this article two examples for applications in high-performance computing are presented. One is the fluid-structure interaction (FSI) in a tidal turbine. The other one is the simulation of unsteady vortices in hydraulic turbine draft tubes. The architecture for fluid-structure interaction with the in-house CFD code FENFLOSS and a commercial structural code is presented. Furthermore, issues of installing the environment on a NEC SX-8 vector computer is discussed and performance data is presented. Additionally, the issues of turbulence and the impact of turbulence models on the accuracy of the vortex capturing are investigated. All simulations are performed on a cluster (structural mechanics) and a NEC SX-8 vector computer (CFD).

Suggested Citation

  • Felix Lippold & Eugen Ohlberg & Albert Ruprecht, 2009. "Partitioned Fluid-Structure Coupling and Vortex Simulation on HPC-Systems," Springer Books, in: Wolfgang E. Nagel & Dietmar B. Kröner & Michael M. Resch (ed.), High Performance Computing in Science and Engineering '08, pages 411-424, Springer.
  • Handle: RePEc:spr:sprchp:978-3-540-88303-6_29
    DOI: 10.1007/978-3-540-88303-6_29
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