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R513A flow boiling heat transfer inside horizontal smooth tube and microfin tube

机译:R513A流沸腾热传递内部水平光滑管和微素管

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This paper presents experimental results for R513A flow boiling inside a 3.5 mm ID horizontal smooth tube and inside a 3.4 mm ID horizontal microfin tube. R513A is an azeotropic mixture made of R1234yf and R134a (56% and 44% in mass), and it is proposed as a direct substitute of the common R134a. The flow boiling heat transfer coefficients are measured for mass velocity ranging between 150 and 800 kg m(-2) s(-1), for heat fluxes from 12 to 60 kW m(-2), at a saturation temperature at the inlet of the test section of 20 degrees C. The effects of mass velocity, heat flux and vapor quality on the thermal performance are analyzed both for the smooth tube and for the microfin tube. The heat transfer enhancement of the microfin tube compared to the smooth tube is also presented. The comparison reveals that the microfin tube considerably augments the heat transfer coefficient especially at low mass velocity, whereas at high mass velocity microfin tube and smooth tube show almost the same heat transfer coefficient. Finally, the collected experimental heat transfer coefficients are compared against values predicted by empirical correlations available in the open literature. (C) 2019 Elsevier Ltd and IIR. All rights reserved.
机译:本文介绍了3.5mm ID水平光滑管内部的R513A流量沸腾的实验结果,以及3.4mm ID水平微素管内。 R513A是由R1234YF和R134a制成的共沸混合物(56%和44%),提出作为普通R134a的直接替代品。测量流动沸腾的传热系数在150-800kg m(-2)s(-1)之间的质量速度测量,用于从12至60kW m(-2)的热通量,在入口处的饱和温度试验部分为20℃。分析了质量速度,热通量和蒸汽质量对热性能的影响,用于光滑管和微素管。还提出了与光滑管相比的微素管的热传递增强。比较揭示了微素管的显着增加了尤其在低质量速度下增加了传热系数,而在高质量速度微素管和光滑的管处具有几乎相同的传热系数。最后,将收集的实验传热系数与开放文献中可用的经验相关性预测的值进行比较。 (c)2019年Elsevier Ltd和IIR。版权所有。

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