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Experimental study of the heat transfer coefficient and pressure drop of R1234yf condensing flow in flattened smooth tubes

机译:扁平光滑管中R1234YF冷凝流量传热系数和压降的实验研究

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摘要

The present study investigates the heat transfer coefficient and pressure drop of refrigerant R1234yf condensing flow in flattened tubes. Three tubes with internal heights of 6.2, 5.1 and 2.8 mm (aspect ratios of 1.5, 2 and 4), made by flattening 8.2mm inner diameter round tubes, were used. The tests were conducted at a mass velocity range of 95-380 kg m(-2) s(-1) and vapor quality range of 0.15-0.8. The effects of tubes flattening, mass velocity and vapor quality on heat transfer coefficient and pressure drop were studied. The results indicated that using flattened tubes increases the heat transfer coefficient and pressure drop. However, at low mass velocities, flattening does not have a significant effect on the heat transfer coefficient. Based on the results, two correlations were proposed to predict the heat transfer coefficient and pressure drop in flattened tubes by modifying the existing correlations in the literature. The performance of flattened tubes was evaluated by defining the performance evaluation criteria (PEC), considering both heat transfer enhancement and pressure drop increase at different working conditions. The highest PEC was observed for the tube with an aspect ratio of 4 at the mass velocity of 380 kg m(-2) s(-1). (C) 2019 Elsevier Ltd and IIR. All rights reserved.
机译:本研究研究了扁平管中制冷剂R1234YF冷凝流的传热系数和压降。使用通过平坦化8.2mm内径的圆形管制成的内部高度为6.2,5.1和2.8mm(宽高比为1.5,2和4)的管。测试在95-380kg m(-2)s(-1)的质量速度范围内,并且蒸气质量范围为0.15-0.8。研究了管道扁平,质量速度和蒸气质量对传热系数和压降的影响。结果表明,使用扁平管增加了传热系数和压降。然而,在低质量速度下,扁平化对传热系数没有显着影响。基于结果,提出了两个相关性来预测通过改变文献中的现有相关性的扁平管中的传热系数和压降。通过定义性能评估标准(PEC)来评价扁平管的性能,考虑到不同工作条件下的传热增强和压降增加。对于380kg m(-2)S(-1)的质量速度,纵横比为4的管,观察到最高PEC。 (c)2019年Elsevier Ltd和IIR。版权所有。

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