Incompressible/Compressible Flow Analysis over High-Lift Airfoil Using Two-Equation Turbulence Models

2-방정식 난류모델을 이용한 고양력 익형 주위의 비압축성/압축성 유동장 해석

  • 김창성 (서울대학교 항공우주공학과) ;
  • 김종암 (서울대학교 항공우주공학과) ;
  • 노오현 (서울대학교 항공우주공학과)
  • Published : 1998.11.01

Abstract

The two-dimensional incompressible and compressible Navier-Stokes codes are developed for the computation of the viscous turbulent flow over high-lift airfoils. Incompressible code using pseudo-compressibility and dual-time stepping method involves a conventional upwind differencing scheme for the convective terms and LU-SGS scheme for time integration. Compressible code also adopts an FDS scheme and LU-SGS scheme. Several two-equation turbulence models (the standard $k-{\varepsilon}$ model, the $k-{\omega}$ model. and $k-{\omega}$ SST model) are evaluated by computing the flow over single and multi-element airfoils. The compressible and incompressible codes are validated by computing the flow around the transonic RAE2822 airfoil and the NACA4412 airfoil, respectively. Both the results show a good agreement with experimental surface pressure coefficients and velocity profiles in the boundary layers. Also, the GA(W)-1 single airfoil and the NLR7301 airfoil with a flap are computed using the two-equation turbulence models. The grid systems around two- and three-element airfoil are efficiently generated using Chimera grid scheme, one of the overlapping grid generation methods.

Keywords