首页> 外文会议>ASME international heat transfer conference;IHTC14 >HISTORY, ADVANCES, AND CHALLENGES IN LIQUID FLOW AND FLOW BOILING HEAT TRANSFER IN MICROCHANNELS: A CRITICAL REVIEW
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HISTORY, ADVANCES, AND CHALLENGES IN LIQUID FLOW AND FLOW BOILING HEAT TRANSFER IN MICROCHANNELS: A CRITICAL REVIEW

机译:微通道中液体流动和流动沸腾传热的历史,进展和挑战:一项重要的评论

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As the scale of devices becomes small, thermal control and heat dissipation from these devices can be effectively accomplished through the implementation of microchannel passages. The small passages provide a high surface area to volume ratio that enables higher heat transfer rates. High performance microchannel heat exchangers are also attractive in applications where space and/or weight constraints dictate the size of a heat exchanger or where performance enhancement is desired. This survey article provides a historical perspective of the progress made in understanding the underlying mechanisms in single-phase liquid flow and two-phase flow boiling processes and their use in high heat flux removal applications. Future research directions for (i) further enhancing the single-phase heat transfer performance, and (ii) enabling practical implementation of flow boiling in microchannel heat exchangers, are outlined.
机译:随着装置的尺寸变小,通过实施微通道通道可以有效地实现这些装置的热控制和散热。小通道可提供较高的表面积与体积之比,从而可实现更高的传热速率。高性能微通道换热器在空间和/或重量限制决定了换热器的尺寸或需要提高性能的应用中也很有吸引力。这篇调查文章提供了有关了解单相液体流和两相流沸腾过程的基本机理及其在高热通量去除应用中的应用方面的进展的历史观点。概述了(i)进一步增强单相传热性能和(ii)能够在微通道换热器中实际实施沸腾的未来研究方向。

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