Mercadier, YvesUniversité de Sherbrooke, Québec, J1K2R1, Canada
Author
Proulx, PierreUniversité de Sherbrooke, Québec, J1K2R1, Canada
Author
Abstract
A fully elliptic Navier-Stokes equation solver in conjunction with a Reynolds stress model is validated for mildly and strongly underexpanded jets. For mildly underexpanded jets, good agreement has been found compared to available measurements for the shock reflections. The model even demonstrated some improvements over a three-dimensional modified κ-ε model for turbulent predictions, which confirms the inadequacy of isotropic eddy-viscosity-based models to represent properly the turbulence in those flows. For the strongly underexpanded case, the predicted Mach disk location and size are found to be in excellent agreement compared to available measurements. In addition, the predicted flow structure beyond the disk agrees with experimental observations. An attempt is also made to explain the strong coupling between some dynamic features and heat transfer aspects.
Université de Sherbrooke, Québec, J1K2R1, CanadaPlasma Research Center (CRTP)
Citations
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FWB
Bartosiewicz, Y., Mercadier, Y., & Proulx, P. (2002). Numerical Investigations on the Dynamics and Heat transfer in a Turbulent Underexpanded Jet. AIAA Journal : devoted to aerospace research and development, 40(11), 2257-2265. https://doi.org/10.2514/2.1562 (Original work published 2002)