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Numerical model of a parallel flow minichannel evaporator with new flow boiling heat transfer correlation

机译:具有新流沸热传热相关性的平行流动迷你槽蒸发器的数值模型

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摘要

In this paper, a distributed parameter (DP) numerical model with the new proposed flow boiling heat transfer correlation was established for parallel flow minichannel (PFMC) evaporator. DP model validation was made by comparing the measured values obtained on experimental studies, which were conducted under refrigerant mass flow rate range of 34.6-245.6 kg h(-1) and evaporation pressure of 200-500 kPa. The effects of four different flow boiling heat transfer correlations on DP model performance were investigated. Results showed that the new correlation predicted 99% of experimental data in +/- 30% error bands. Moreover, the DP model with the new correlation yielded the mean absolute error (MAE) of 1.5%, 9.1%, 18.8%, 14.2% and 19.8% in prediction of cooling capacity, outlet air temperature, refrigerant superheat, air side and refrigerant side pressure drop, respectively. The presented DP model can be implemented to evaluate the performance of PFMC evaporator, and therefore can save efforts on component and system design and optimization. (C) 2016 Elsevier Ltd and International Institute of Refrigeration. All rights reserved.
机译:在本文中,建立了具有新提出的流沸热传递相关性的分布式参数(DP)数值模型,用于并联流量迷你烷基(PFMC)蒸发器。通过比较在实验研究中获得的测量值进行DP模型验证,该测量值在34.6-245.6kg H(-1)的制冷剂质量流速范围内,蒸发压力为200-500kPa。研究了四种不同流沸热传递相关性对DP模型性能的影响。结果表明,新的相关性预测了+/- 30%误差频段的99%的实验数据。此外,具有新相关的DP模型产生了1.5%,9.1%,18.8%,14.2%和19.8%,预测冷却能力,出口空气温度,制冷剂过热,空气侧和制冷剂侧压降分别。可以实现所呈现的DP模型以评估PFMC蒸发器的性能,因此可以节省部件和系统设计和优化的力度。 (c)2016年Elsevier Ltd和国际制冷研究所。版权所有。

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