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Heat transfer characteristics of thermally developing flow in rectangular microchannels with constant wall temperature

机译:恒定壁温矩形微通道热显影流动的传热特性

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摘要

Heat transfer at the thermal entrance region of rectangular microchannels is investigated for hydrodynamically fully developed but thermally developing flow with constant wall temperature. The effects of Reynolds number and aspect ratio on heat transfer properties have been calculated numerically. The local Nusselt number is found to be quite sensitive to the Reynolds number, especially for small Reynolds numbers. The slope of the Nusselt number curve is steeper with a lower Reynolds number when close to the inlet. It is found that the local Nusselt number is independent of the cross-sectional geometry at the channel inlet and the discrepancy of the local Nusselt number for different aspect ratios is gradually magnified along the streamwise direction. In consideration of the effects of Reynolds number and aspect ratio, new correlations are developed for actual Nusselt number and thermal entrance length of rectangular channels. A peak value of thermal entrance lengths can be discovered with the aspect ratio near 3. The present results may provide guidance for thermal design and optimization.
机译:研究了矩形微通道的热入口区域的热传递,用于采用恒定壁温的流体动力学完全开发但热显影流动。雷诺数和纵横比对传热性能的影响已经在数值上计算。发现当地的营养号码对雷诺数非常敏感,特别是对于小雷诺数。当靠近入口时,纽带数曲线的斜率是具有较低的雷诺数。发现局部露珠数与通道入口处的横截面几何形状无关,并且不同纵横比的局部泡沫数的差异沿着流动方向逐渐放大。考虑到雷诺数和纵横比的影响,为实际的孤立信道和热入口长度开发了新的相关性。热入口长度的峰值可以通过宽高的比率靠近3.本结果可以为热设计和优化提供指导。

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