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An experimental study on fully developed laminar flow and heat transfer in rectangular microchannels

机译:矩形微通道中充分发展的层流和传热的实验研究

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An empirical study has been performed to explore the validity of theoretical correlations based on conventional sized channels for predicting fluid flow and heat transfer characteristics in microchannels. The flow resistance and thermal behavior of laminar flow through 10 different rectangular microchannels with hydraulic diameters of 155-580 pm and aspect ratios of 0.25-3.8 at Reynolds numbers ranging from 30 to 2500 were investigated. The single-phase laminar friction factors in the microchannels conformed to the conventional Poiseuille flow theory. The critical Reynolds number increased from 1700 to 2400 with a decrease in the aspect ratio from 1.0 to 0.25. The existence of two heat transfer regimes was verified. At Re< 180, the experimental Nusselt numbers were lower than the theoretical values and increased rapidly with the Reynolds number. The Nusselt numbers began to exceed the theoretical values for Re> 180; however, its rate of increase with the Reynolds number slowed considerably. In this region, the theoretical value of the Nusselt number was assessed to be reasonable as an estimate for rectangular microchannels when the aspect ratio was greater than 1.0. (C) 2016 Elsevier Inc. All rights reserved.
机译:已经进行了一项经验研究,以探索基于常规尺寸通道的理论相关性的有效性,以预测微通道中的流体流动和传热特性。研究了层流在10个不同的矩形微通道中的流动阻力和热行为,这些矩形微通道的水力直径为155-580 pm,纵横比为0.25-3.8,雷诺数为30-2500。微通道中的单相层流摩擦因子符合常规的泊瓦伊流理论。临界雷诺数从1700增加到2400,长宽比从1.0降低到0.25。验证了两种传热机制的存在。在Re <180时,实验Nusselt数低于理论值,并随雷诺数快速增加。 Nusselt数开始超过Re> 180的理论值;但是,随着雷诺数的增加,其增长率大大降低了。在该区域中,当纵横比大于1.0时,可以将Nusselt数的理论值评估为合理的矩形微通道估计值。 (C)2016 Elsevier Inc.保留所有权利。

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