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A Comparative Study of Subcooled Flow Boiling in Uniform, Diverging Cross-section and Segmented Finned Microchannels

机译:均匀,扩散截面和分段翅片微通道过冷沸腾的比较研究

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In this work an experimental investigation has been performed to assess the heat transfer characteristics during subcooled flow boiling in diverging and segmented finned microchannels relevant to applications in electronics cooling systems. Experiments have been also performed in uniform cross-section microchannels to compare their performances with other two types of channels configurations. Arrays of microchannel consisting of 12 numbers of channels with rectangular cross-section have been fabricated on individual copper block for these three different geometrical configurations. Deionized water has been used as the working fluid in the experiment. Experiments have been performed mostly in subcooled boiling regions relevant to cooling of electronic components where bulk fluid was below the saturation temperature and the surface temperature was around the saturation temperature of the coolant. The heat transfer characteristics of all three configurations have been compared in terms of heat transfer coefficient and thermal instability during highly subcooled and developed subcooled flow boiling. Although diverging channel performs significantly better in saturated and superheated regions of boiling with high heat flux as observed in literature, in present work its performance has been found slightly better in subcooled boiling regions compared to uniform cross-section channel. Segmented finned channels have shown the best performance both in sensible heating and subcooled region and thus demonstrate high potential for electronics cooling applications.
机译:在这项工作中,已经进行了实验研究,以评估在电子冷却系统中的应用中的发散和分段的翅片微通道中的过冷流量沸腾过程中的传热特性。在均匀的横截面微通道中也进行了实验,以将它们的性能与其他两种类型的通道配置进行比较。由12个具有12个具有矩形横截面的通道组成的微通道阵列已经在各种铜块上制造了这三种不同的几何配置。去离子水已被用作实验中的工作液。实验已经在与冷却电子元件的冷却相关的过冷沸点区域中,其中大量流体低于饱和温度,表面温度围绕冷却剂的饱和温度。在高度过脱机的热传递系数和热不稳定性方面比较了所有三种配置的传热特性,并产生过冷却流沸腾。尽管在文献中观察到的具有高热量的沸腾区域的饱和和过热区域的发散通道显着更好地,但是在本工作中,与均匀的横截面通道相比,在过冷沸点中,其性能略微发现。分段的翅片通道显示了合理加热和过冷区域的最佳性能,从而证明了电子冷却应用的高潜力。

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