HEAT-TRANSFER CHARACTERISTICS OF WATER FLOWING THROUGH MICROCHANNELS

被引:191
作者
PENG, XF
PETERSON, GP
WANG, BX
机构
[1] TEXAS A&M UNIV,DEPT MECH ENGN,COLLEGE STN,TX 77843
[2] TSING HUA UNIV,DEPT THERMAL ENGN,BEIJING 100084,PEOPLES R CHINA
关键词
D O I
10.1080/08916159408946485
中图分类号
O414.1 [热力学];
学科分类号
摘要
The forced-flow convection of water through rectangular microchannels having hydraulic diameters of 0.133-0.367 mm and aspect ratios of H/W = 0.333-1 was investigated experimentally. The flow friction was measured to analyze the heat transfer regimes and to explore the physical aspects of the convective heat transfer The experimental measurements indicated Bat Be upper bound of Be laminar heat transfer regime occurred at a Reynolds number of 200-700 and fully turbulent convective heat transfer was reached at Reynolds numbers of 400-1,500. The transition Reynolds number diminished with the reduction of Be microchannel dimension, and Be transition range was observed to become smaller in magnitude. For the laminar heat transfer regime, the Nusselt number was found to be proportional to Re-0.62, while the turbulent heat transfer case exhibited a typical relationship between Nu and Re, but with a different empirical coefficient, C-H,C-t. The geometric parameters were found to be important variables Bat could significantly affect the flow characteristics and heat transfer. The laminar convective heat transfer had a maximum value when the aspect ratio, H/W, was approximately equal to 0.75, and the turbulent heat transfer was optimal when the aspect ratio was in the range 0.5-0.75.
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页码:265 / 283
页数:19
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