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Enhancement and Applications of a Structural URANS Solver

In: High Performance Computing in Science and Engineering ‘14

Author

Listed:
  • Christian Stanger

    (Universität Stuttgart, Institut für Aerodynamik und Gasdynamik)

  • Benjamin Kutz

    (Universität Stuttgart, Institut für Aerodynamik und Gasdynamik)

  • Ulrich Kowarsch

    (Universität Stuttgart, Institut für Aerodynamik und Gasdynamik)

  • E. Rebecca Busch

    (Universität Stuttgart, Institut für Aerodynamik und Gasdynamik)

  • Manuel Keßler

    (Universität Stuttgart, Institut für Aerodynamik und Gasdynamik)

  • Ewald Krämer

    (Universität Stuttgart, Institut für Aerodynamik und Gasdynamik)

Abstract

The enhancement of the structured Computational Fluid Dynamics code FLOWer and three applications are presented. FLOWer has been improved by implementing a fifth order scheme for flow state reconstruction. The benefits of the improved vertex conservation are shown in a trimmed and weakly coupled main rotor simulation. Additionally, because of the reduced numeric dissipation, results of flow simulations of brownout conditions are massively improved. Finally the possibilities for acoustic evaluations are shown at the example of two different setups of Contra-Rotating Open Rotors.

Suggested Citation

  • Christian Stanger & Benjamin Kutz & Ulrich Kowarsch & E. Rebecca Busch & Manuel Keßler & Ewald Krämer, 2015. "Enhancement and Applications of a Structural URANS Solver," Springer Books, in: Wolfgang E. Nagel & Dietmar H. Kröner & Michael M. Resch (ed.), High Performance Computing in Science and Engineering ‘14, edition 127, pages 433-446, Springer.
  • Handle: RePEc:spr:sprchp:978-3-319-10810-0_29
    DOI: 10.1007/978-3-319-10810-0_29
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