LES of Supersonic Turbulent Channel Flow at Mach Numbers 1.5 and 3

ORAL

Abstract

LES of compressible, turbulent, body-force driven, isothermal-wall channel flows at $Re_{\tau}$ of 190 and 395 at moderate supersonic speeds (Mach 1.5 and 3) are presented. Simulations are fully resolved in the wall-normal direction without the need for wall-layer models. SGS models for incompressible flows, with appropriate extensions for compressibility, are tested {\it a priori\/} with DNS results and used in LES. Convergence of the simulations is found to be sensitive to the initial conditions and to the choice of model (wall-normal damping) in the laminar sublayer. The Nicoud--Ducros wall adapting SGS model, coupled with a standard SGS heat flux model, is found to yield results in good agreement with DNS.

Authors

  • Sriram Raghunath

    Michigan State University

  • Giles Brereton

    Michigan State University