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首页> 外文期刊>International Journal of Thermal Sciences >Scale effects on flow boiling heat transfer in microchannels: A fundamental perspective
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Scale effects on flow boiling heat transfer in microchannels: A fundamental perspective

机译:尺度效应对微通道中流动沸腾传热的影响:基本观点

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摘要

Flow boiling in microchannels has received considerable attention from researchers worldwide in the last decade. A scaling analysis is presented to identify the relative effects of different forces on the boiling process at microscale. Based on this scaling analysis, the flow pattern transitions and stability for flow boiling of water and FC-77 are evaluated. From the insight gained through the careful visualization and thermal measurements by previous investigators, similarities between heat transfer around a nucleating bubble in pool boiling and in the elongated bubble/slug flow pattern in flow boiling are brought out. The roles of microlayer evaporation and transient conduction/microconvection are discussed. Furthermore, it is pointed out that the convective contribution cannot be ruled out on the basis of experimental data which shows no dependence of heat transfer coefficient on mass flow rate, since the low liquid flow rate during flow boiling in microchannels at low qualities leads to laminar flow, where heat transfer coefficient is essentially independent of the mass flow rate. Specific suggestions for future research to enhance the boiling heat transfer in microchannels are also provided.
机译:在过去的十年中,微通道中的沸腾现象已引起全球研究人员的相当大的关注。提出了定标分析,以识别不同力在微观尺度上对沸腾过程的相对影响。基于这种结垢分析,评估了水和FC-77的沸腾流动形态转换和稳定性。从以前的研究人员通过仔细的可视化和热测量获得的见解中,可以得出池沸腾中成核气泡周围的传热与流沸腾中细长的气泡/团状流态之间的相似性。讨论了微层蒸发和瞬态传导/微对流的作用。此外,要指出的是,不能根据对流系数不排除传热系数对质量流量的影响的实验数据来排除对流作用,因为在低质量的微通道中沸腾过程中的低液体流量会导致层流。流量,其中传热系数基本上与质量流量无关。还提供了进一步研究的建议,以增强微通道中的沸腾传热。

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