NASA NTRS · 19890054427
Supersonic flow computations by two-equation turbulence modeling
Abstract
In the present work a solver for the Reynolds averaged compressible Navier-Stokes equations, to compute high speed turbulent flows characterized by interacting shock waves and viscous layers, is presented. A k-epsilon turbulence model that accounts for compressibility effects is developed. The numerical algorithm is based on a finite volume multistage Runge Kutta technique that is explicit for the solution of the mean flow variables, and implicit for the solution of the k-epsilon equations. The model is validated by extensive comparison with experimental results of flows over compression ramps characterized by interacting shock waves/boundary layers.
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Grasso, Francesco, Speziale, Charles G.. 1989-01-01. Supersonic flow computations by two-equation turbulence modeling. https://ntrs.nasa.gov/citations/19890054427
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