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Evaporation heat transfer coefficient and pressure drop of n-pentane inside parallel multiport mini channel

机译:并联多端口微型通道内正戊烷的蒸发传热系数和压降

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This paper investigates experimentally heat transfer during evaporation of n-pentane inside a parallel multiport mini-channel. The experimental tests are conducted in a test section within five rectangular stainless steel minichannels. The local heat transfer coefficient is measured for different testing conditions to study the influence of mass flux (G = 113-187 kg/m(2).s) and heat flux (200 W-320 W). For low vapor quality region [0-0.4], the domination of nucleate boiling is significant while the forced convective boiling is obtained for high vapor quality region. A comparison of the experimental results with existing correlations is carried out by calculating mean absolute deviation which led to some diverging correlations > 100% while others present a good estimation around 30%. Thus, a new correlation is developed to predict local heat transfer with MAE of 22% based on the experimental results. A considerable attention is also paid to pressure drop effects by measuring experimentally pressure drop in the minichannels and develop a new correlation to evaluate frictional pressure drop.
机译:本文研究了在平行多端口微型通道内正戊烷蒸发过程中的传热实验。实验测试是在五个矩形不锈钢微型通道内的测试区域中进行的。测量不同测试条件下的局部传热系数,以研究质量通量(G = 113-187 kg / m(2).s)和热通量(200 W-320 W)的影响。对于低蒸汽质量区域[0-0.4],成核沸腾占主导地位,而对于高蒸汽质量区域则获得强制对流沸腾。通过计算平均绝对偏差,将实验结果与现有的相关性进行比较,这导致了一些发散的相关性> 100%,而另一些则给出了大约30%的良好估计。因此,根据实验结果,开发了一种新的相关性来预测MAE为22%的局部传热。通过实验测量微通道中的压降并开发新的相关性以评估摩擦压降,压降效应也得到了极大的关注。

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