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Investigation of flow distribution and effect of aspect ratio on critical heat flux in multiple parallel microchannel flow boiling

机译:多平行微通道流沸腾中临界热通量的流动分布及纵横比的影响

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摘要

In this paper, an experimental study on the effect of the low aspect ratio of microchannel on the critical heat flux (CHF) during saturated flow boiling of water is presented. Multiple parallel silicon microchannels with different aspect ratios, hydraulic diameter, and number of channels in the range of 0.2-0.5, 154.0-184.8 μm, and 3-9 respectively are fabricated, and the experiments are performed in the range of mass fluxes 24.1-806.5 kg m~(-2) s~(-1). It is found that the CHF is caused by the wall dryout near the microchannel exit. The effect of microchannel aspect ratio with the same hydraulic diameter on the CHF is found to be insignificant. Twenty-five CHF data points are obtained for microchannel flow boiling of water and are compared with the CHF predictive methods reported in the literature. A new CHF correlation is proposed, which predicts the measured CHF with the mean absolute deviation of 12.1%, which is substantially better than available CHF predictive methods. The findings from this study provide guidelines for designing multiple parallel microchannel heat sinks in two-phase flow for the thermal management of electronic equipment, spacecraft, satellites, energy conversion devices, and biomedical engineering.
机译:本文介绍了对饱和流动沸腾期间微通道对临界热通量(CHF)对临界热通量(CHF)的低纵横比的实验研究。分别具有不同纵横比,液压直径的多个平行硅微通道,液压直径和分别在0.2-0.5,154.0-184.8μm和3-9的范围内,并且实验在质量通量的范围内进行24.1- 806.5 kg m〜(-2)s〜(-1)。发现CHF是由微通道出口附近的墙壁干号引起的。发现微通道纵横比与CHF相同的液压直径的影响是微不足道的。对于微通道流沸腾的水,获得了二十五个CHF数据点,并与文献中报道的CHF预测方法进行比较。提出了一种新的CHF相关性,其预测测量的CHF,其平均绝对偏差为12.1%,这显着优于可用的CHF预测方法。本研究的调查结果提供了在电子设备,航天器,卫星,能量转换装置和生物医学工程的热管理中设计多个平行微通道散热器的指导。

著录项

  • 来源
    《Heat and mass transfer 》 |2021年第4期| 647-663| 共17页
  • 作者单位

    Department of Mechanical Engineering Indian Institute of Technology Bombay Mumbai 400076 India;

    Department of Mechanical Engineering Indian Institute of Technology Bombay Mumbai 400076 India;

    Department of Mechanical Engineering Indian Institute of Technology Bombay Mumbai 400076 India;

    Department of Mechanical Engineering Indian Institute of Technology Bombay Mumbai 400076 India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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