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Methodology for more accurate assessment of heat loss in microchannel flow boiling

机译:更精确评估微通道沸腾中热损失的方法

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Flow boiling in micro-channels is a technology that can potentially be employed for cooling of next generation electronics. High heat transfer coefficient, better temperature uniformity and small pumping power requirement compared to single phase flow are the main advantages of this technology. Advancement in this field is checked by divergence in trends across various groups which warrents more reliable methods to acquire and post-process experimental data. Heat loss estimation methodology and evaluation of the heat transfer coefficient and exit vapour quality can be further refined to realize reliable data-sets. This article proposes the need to adopt two different methods to account for heat loss, one for the calculation of the heat transfer coefficient, wall temperature and wall heat flux while the other for calculation of exit vapour quality during flow boiling. Experimental results bolstering the proposed need are also presented. Two test-sections each having a single finless microchannel of length 25400 μm and width and height of 2540 μm × 420 μm as well as 2540 μm × 150 μm were used. The difference between the heat loss estimated by the two methods is quite substantial hence justifying the endeavour for better heat loss estimation methodology.
机译:微通道中的沸腾沸腾是一种可以潜在地用于冷却下一代电子设备的技术。与单相流相比,高传热系数,更好的温度均匀性和较小的泵送功率要求是该技术的主要优点。该领域的进步可以通过不同群体之间趋势的差异来检验,这种趋势提供了更可靠的方法来获取和后期处理实验数据。可以进一步完善热损失估算方法以及对传热系数和出口蒸气质量的评估,以实现可靠的数据集。本文提出需要采用两种不同的方法来计算热量损失,一种方法用于计算传热系数,壁温和壁热通量,另一种方法用于计算流沸腾过程中的出口蒸汽质量。还提供了支持拟议需求的实验结果。使用两个测试部分,每个测试部分具有一个长度为25400μm,宽度和高度分别为2540μm×420μm和2540μm×150μm的无翅微通道。两种方法估算的热损失之间的差异非常大,因此证明了为更好的热损失估算方法所做的努力。

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