FLOW SEPARATION PREDICTION ON TRANSONIC AIRCRAFT USING VARIOUS TURBULENCE MODELS

다양한 난류 모델을 이용한 천음속 항공기에서의 흐름 박리 예측

  • 이남훈 (인하대학교 일반대학원 항공우주공학과) ;
  • 곽인근 (인하대학교 일반대학원 항공우주공학과) ;
  • 이승수 (인하대학교 기계공학부 항공우주공학)
  • Published : 2011.05.26

Abstract

In this study, numerical simulations of transonic aircraft configurations are performed with various turbulence models and the effect of turbulence models on flow separation are examined. A three-dimensional RANS code and three turbulence models are used for the study. The turbulence models incorporated to the code include Menter's ${\kappa}-{\omega}$ model, Coakley's $q-{\omega}$, and Huang and Coakley's ${\kappa}-{\omega}$, model. Using the code, numerical simulations of DLR-F6 configurations obtained from AIAA CFD Drag Prediction Workshop are conducted. Flow separations on the wing-body juncture and the wing lower surface near pylon are observed. and flow features of the regions are compared with experimental data and other numerical results.

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