국소교란에 의한 난류박리 재부착 유동의 수치해석Numerical Simulation of Turbulent Separated and Reattaching Flow by Local Forcing

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An unsteady numerical simulation was performed for locally-forced separated and reattaching flow over a backward-facing step. The local forcing was given to the separated and reattaching flow by means of a sinusoidally oscillating jet from a separation line. A version of the $k-{\varepsilon}-f_{\mu}$ model was employed, in which the near-wall behavior without reference to distance and the nonequilibrium effect in the recirculation region were incorporated. The Reynolds number based on the step height (H) was fixed at $Re_H=33000$, and the forcing frequency was varied in the range $0{\leq}St_H{\leq}2$. The predicted results were compared and validated with the experimental data of Chun and Sung. It was shown that the unsteady locally-forced separated and reattaching flows are predicted reasonably well with the $k-{\varepsilon}-f_{\mu}$ model. To characterize the large-scale vortex evolution due to the local forcing, numerical flow visualizations were carried out.
Publisher
대한기계학회
Issue Date
2000-03
Language
Korean
Citation

대한기계학회논문집 B, v.24, no.3, pp.467 - 476

ISSN
1226-4881
URI
http://hdl.handle.net/10203/76509
Appears in Collection
ME-Journal Papers(저널논문)
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