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Turbulent Dispersion Behavior of a Jet Issued into Thermally Stratified Cross Flows(I)

열적으로 성층화된 횡단류에 분출된 제트의 난류확산 거동(I)

  • 김경천 (부산대학교 기계공학부) ;
  • 김상기 (부산대학교 대학원 기계공학과)
  • Received : 1998.07.08
  • Published : 1999.02.01

Abstract

Flow visualization study has been conducted to simulate the turbulent dispersion behavior of a crossflow jet physically under the conditions of various thermal stratification in a wind tunnel. A smoke jet with the constant ratio of the jet to freestream velocity is injected normally to the cross flow of the thermally stratified wind tunnel(TSWT) for flow visualization. The typical natures of the smoke dispersion under different thermal stratifications such as neutral, weakly stable, strongly stable, weakly unstable, strongly unstable and inversion layer are successfully reproduced in the TSWT. The Instantaneous velocity and temperature fluctuations are measured by using a cold and hot-wire combination probe. The time averaged dispersion behaviors, the centerline trajectories, the spreading angles and the virtual origins of the cross jet are deduced from the edge detected images with respect to the stability parameter. All the general characteristics of the turbulent dispersion behavior reveal that the definitely different dispersion mechanisms are inherent in both stable and unstable conditions. It is conjectured that the turbulent statistics obtained in the various stability conditions quantitatively demonstrate the vertical scalar flux plays a key role in the turbulent dispersion behavior.

Keywords

Acknowledgement

Supported by : 첨단유체공학연구센터(AFERC)