Journal of computational fluids engineering (한국전산유체공학회지)
- Volume 1 Issue 1
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- Pages.98-111
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- 1996
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- 1598-6071(pISSN)
Numerical Simulation of Asymmetric Vortical Flows on a Slender Body at High Incidence
큰 받음각을 갖는 세장형 물체 주위의 점성 유동장 수치 모사
- Published : 1996.05.01
Abstract
The compressible laminar and turbulent viscous flows on a slender body in supersonic speed as well as subsonic speed have been numerically simulated at high angle of attack. The steady and time-accurate compressible thin-layer Navier-Stokes code based on an implicit upwind-biased LU-SGS algorithm has been developed and specifically applied at angles of attack of 20, 30 and 40 dog, respectively. The modified eddy-viscosity turbulence model suggested by Degani and Schiff was used to simulate the case of turbulent flow. Any geometric asymmetry and numerical perturbation have not been intentionally or artificially imposed in the process of computation. The purely numerical results for laminar and turbulent cases, however, show clear asymmetric formation of vortices which were observed experimentally. Contrary to the subsonic results, the supersonic case shows the symmetric formation of vortices as indicated by the earlier experiments.
Keywords
- High Angle of Attack;
- LU-SGS Algorithm;
- Degani & Schiff Modified Model;
- Asymmetry;
- Numerical Perturbation