Nonlinear Characteristics of Flow Separation Induced Vibration at Low-Speed Using Coupled CSD and CFD technique

전산구조진동/전산유체 기법을 연계한 저속 유동박리 유발 비선형 진동특성 연구

  • 김동현 (한국과학기술원 기계기술연구소) ;
  • 장태진 (서울대학교 기술정책대학원) ;
  • 권혁준 (한국과학기술원 기계공학과(항공우주공학전공)) ;
  • 이인 (한국과학기술원 기계공학과(항공우주공학전공))
  • Published : 2002.05.01

Abstract

The fluid induced vibration (FIV) phenomena of a 2-D.O.F airfoil system have been investigated in low Reynolds number incompressible flow region. Unsteady flows with viscosity are computed using two-dimensional incompressible Navier-stokes code. To validate developed Navier-Stokes code, steady and unsteady flow fields around airfoil are analyzed. The present fluid/structure interaction analysis is based on the most accurate computational approach with computational fluid dynamics (CSD) and computational structural dynamics (CSD) techniques. The highly nonlinear fluid/structure interaction phenomena due to severe flow separations have been analyzed fur the low Reynolds region (R$_{N}$ =500~5000) that has a dominancy of flow viscosity. The effect of R$_{N}$ on the fluid/structure coupled vibration instability of 2-DOF airfoil system is presented and the effect of initial angle of attack on the dynamic instability are also shown.own.

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