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DNS of Passive Scalar Transport in Turbulent Supersonic Channel Flow

In: High Performance Computing in Science and Engineering, Munich 2004

Author

Listed:
  • Holger Foysi

    (TU München, Fachgebiet Strömungsmechanik)

  • Rainer Friedrich

    (TU München, Fachgebiet Strömungsmechanik)

Abstract

Direct numerical simulations (DNS) of compressible supersonic channel flow of air at Reynolds numbers ranging from Re τ = 180 to Re τ = 560 and Mach numbers ranging from M = 0.3 to M = 3.0 have been performed. A Navier-Stokes solver of high order accuracy has been vectorized and parallelized to run efficiently on the Hitachi SR8000-F1. Budgets of the Reynolds stresses and the passive scalar fluxes are presented, as well as explanations concerning the reduction of the pressure-correlation terms, using a Green's function approach.

Suggested Citation

  • Holger Foysi & Rainer Friedrich, 2005. "DNS of Passive Scalar Transport in Turbulent Supersonic Channel Flow," Springer Books, in: Siegfried Wagner & Werner Hanke & Arndt Bode & Franz Durst (ed.), High Performance Computing in Science and Engineering, Munich 2004, pages 107-117, Springer.
  • Handle: RePEc:spr:sprchp:978-3-540-26657-0_9
    DOI: 10.1007/3-540-26657-7_9
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