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High heat flux flow boiling in silicon multi-microchannels - Part II: Heat transfer characteristics of refrigerant R245fa

机译:硅多微通道中的高热通量沸腾-第二部分:制冷剂R245fa的传热特性

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This article is the second in a three-part study. This second part focuses on flow boiling heat transfer of refrigerant R245fa in a silicon multi-microchannel heat sink and their comparison with the results presented in part I for refrigerant R236fa. This heat sink was the same as utilized in part I. The test conditions covered base heat fluxes from 3.6 to 190 W/cm~2, mass velocities from 281 to 1501 kg/ m~2 s and the exit vapour qualities from 0% to 78%. The effect of saturation pressure on heat transfer was tested from 141 to 273 kPa for R245fa and the effect of sub-cooling from 0 to 19 K. The R245fa database includes 693 local heat transfer coefficient measurements, for which four different heat transfer trends were identified, although in most cases the heat transfer coefficient increased with heat flux, was almost independent of vapour quality and increased with mass velocity. The entire database, including both R245fa and R236fa measurements, was compared with four prediction methods for flow boiling heat transfer in microchannels. The three-zone model of Thome et al. (J.R. Thome, V. Dupont, A.M. Jacobi, Heat transfer model for evaporation in microchannels. Part I: presentation of the model, International J. Heat Mass Transfer 47 (2004) 3375-3385) was found to give the best predictions, capturing 90% of the data within ±30% in the slug and annular flow regimes (x > 5%).
机译:本文是由三部分组成的研究中的第二篇。第二部分着重于硅多微通道散热器中制冷剂R245fa的流沸腾传热,并将其与第一部分中制冷剂R236fa的结果进行比较。该散热器与第一部分中使用的散热器相同。测试条件包括基础热通量从3.6到190 W / cm〜2,质量速度从281到1501 kg / m〜2 s,出口蒸气质量从0%到78%。对于R245fa,饱和压力对传热的影响从141 kPa到273 kPa,过冷的影响从0到19 K进行了测试。R245fa数据库包括693个局部传热系数测量值,确定了四种不同的传热趋势,尽管在大多数情况下,传热系数随热通量增加,但几乎与蒸气质量无关,而随质量速度增加。将包括R245fa和R236fa测量在内的整个数据库与四种预测微通道内流沸腾传热的方法进行了比较。 Thome等人的三区模型。 (JR Thome,V.Dupont,AM Jacobi,“微通道中蒸发的传热模型。第一部分:模型的介绍,国际J.传质传递47(2004)3375-3385)被发现提供了最好的预测,包括90%的数据在流和环形流态(x> 5%)的±30%以内。

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