4.6 Article

Influences of the turbulence model and the slot width on the transverse slot injection flow field in supersonic flows

Journal

ACTA ASTRONAUTICA
Volume 73, Issue -, Pages 1-9

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.actaastro.2011.12.003

Keywords

Aerospace propulsion system; Transverse jet; Turbulence model; Slot width; Supersonic flow; Length of the upstream separation region; Height of the Mach surface

Funding

  1. Science Foundation of National University of Defense Technology [JC11-01-02]
  2. National Science Foundation of China [90816027, 61004094]

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Transverse slot injection scheme is very important for the mixing process between the air and the fuel in supersonic flows. The effect of the turbulence model and slot width on the transverse slot injection flow field has been investigated numerically based on the grid independency analysis, and the predicted results have been compared with the experimental data available in the open literature. The obtained results show that the grid scale makes only a slight difference to the wall pressure profiles for all jet-to-crossflow pressure ratios employed in this study, and the wall pressure profile with low jet-to-crossflow pressure ratio is predicted accurately by the RNG k-epsilon, turbulence model, the SST k-omega turbulence model for the flow field with high jet-to-crossflow pressure ratio. High jet-to-crossflow pressure ratio can increase the jet penetration depth in supersonic flows, and the gradient of the length of the upstream separation region is larger than that of the height of the Mach surface. At the same time, when the jet-to-crossflow pressure ratio is maintained constant, the jet penetration depth increases with the increase of the slot width. (C) 2011 Elsevier Ltd. All rights reserved.

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