Unsteady Wall Pressure Fluctuation Generated from the Impinging Vortex on the Chamfered Forward Step

모따기된 전향계단에 부딪치는 와류에 의한 비정상 벽면압력 변동

  • 유기완 (전북대학교 공과대학 기계항공시스템공학부) ;
  • 이준신 (한전 전력연구원 원자력연구실)
  • Published : 2001.11.01

Abstract

Modifying effects of the rectangular forward step for suppressing the unsteady pressure fluctuation during interaction between the upstream vortical flow with the edge are studied numerically. The vortical flow is modeled by a point vortex, and the unsteady pressure coefficient is obtained from the velocity and the potential field. To investigate the effects of the edge shape the rectangular forward step is chamfered with various angles. Calculation show that the pressure peaks become decreased by increasing the vortex height as well as the chamfering angle. The pressure amplitudes are very sensitive to the change of the initial vortex height. From this study we can find out that the chamfered edge has two effects; the one is that it suppresses the pressure amplitude generated from the edge, and the other is that it decreases the time variation of unsteady pressure fluctuation. These modifying concepts can be applied to attenuate the self-sustained oscillation mechanism at the open cavity flow.

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