입구 유동 가진에 의한 사각 발열체 주위의 유동제어 및 열전달촉진 (I) 유동장 수치해석

Flow Control and Heat Transfer Enhancement from a Heated Block by an Inflow Pulsation (I) Flow Field Computation

  • 리광훈 (서울시립대학교 기계정보공학과) ;
  • 김서영 (KIST 열유동제어연구센) ;
  • 성형진 (한국과학기술원 기계공학과)
  • 발행 : 2002.07.01

초록

The characteristics of a pulsating flow field from a heated block representing heat-dissipating electronic component in a channel have been numerically investigated. At the channel inlet a pulsating sinusoidal flow is imposed. The Reynolds number based on the channel height (H) is fixed at Re=500, and the forcing frequency is varied in the range of $0\leqSt\leq2$. Numerical results on the time-dependent flow field are obtained and averaged over a cycle of pulsation. The effect of the important governing parameters such as the Strouhal number is investigated in detail. The results indicate that the recirculating flow behind the block is substantially affected by the pulsation frequency. To characterize the periodic vortex shedding due to the inflow pulsation, numerical flow visualizations are carried out.

키워드

참고문헌

  1. Ghaddar, N. K, Magen, M., Mikic, B. B. and Patera, A. T., 1986, Numerical Investigation of Incompressible Flow in Grooved Channels, Part 1. Stability and Self-sustained Oscillations, Journal of Fluid Mechanics, Vol. 163, pp. 99-127
  2. Kim, S. Y., Kang, B. H. and Jaluria, Y, 1998, Thermal Interaction between Isolated Heated Electronic Components in Pulsating Channel Flow, Numerical Heat Transfer Part A-Applications, Vol. 34, Iss. 1, pp. 1-21
  3. Rhee, G. H. and Sung, H.J., 2000, Numerical Prediction of Locally-forced Turbulent Separated and Reattaching Flow, Fluid Dynamics Research, Vol. 26, Issue 6, pp. 421-436
  4. Chun, K. B. and Sung, H.J., 1996, Control of Turbulent Separated Flow over a Backward-facing Step by Local Forcing, Exp, Fluids, Vol. 21, pp. 417-426
  5. Kiya, M., Shimizu, M., Mochizuki, O., Ido, Y and Tezuka, H., 1993, Active Forcing of an Axisymmetric Leading-edge Turbulent Separation Bubble, AIAA paper 93-3245
  6. Patankar, S. V., 1980, Numerical Heat Transfer and Fluid Flow, Hemisphere, New York
  7. Tropea, C. D. and Gackstatter, R., 1985, The Flow over two-dimensional sufrace-rnounted obstacles at low Reynolds numbers, Transactions of ASME Journal of Engineering, Vol. 107, pp. 489-494 https://doi.org/10.1115/1.3242518