단일 주파수 가진을 이용한 원형 제트의 난류 억제

Suppression of Turbulence in a Circular Jet Using a Single Frequency Excitation

  • 박정영 (서울대학교 정밀기계설계공동연구소 난류제어연구단) ;
  • 최해천 (서울대학교 기계항공공학부)
  • 발행 : 2002.08.01

초록

Large eddy simulation of a circular jet at the Reynolds number of 10000 is performed to investigate turbulence suppression effect with single frequency excitation at the non-dimensional frequency of 0.017. Instantaneous flow fields show that, with excitation, naturally occurring energetic vortices are suppressed through earlier saturation and breakdown of the shear layer vortices into fine grained turbulence. Due to the excitation, the Reynolds stresses are larger for the excited case near the jet and turbulence suppression begins afterward. The Reynolds normal stresses show largest suppression in the shear layer near the jet and in the centerline further downstream, while the Reynolds shear stress shows largest suppression in the shear layer at all the downstream locations.

키워드