低全球升温潜能值制冷剂 R-513A 在光滑管上的池沸传热性能

IF 1.7 4区 工程技术 Q3 MECHANICS
Abhishek Kumar, Shou-Yin Yang
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引用次数: 0

摘要

本研究介绍了 R-513A 的池沸腾传热性能,R-513A 是 R-134a 的一种低全球升温潜能值替代品,在不同饱和温度下用于光滑管。测试在 10 至 90 kW/m2 的热通量范围内进行。实验结果表明,在低热流量 \(q^{prime\prime}\) ≤ 30 kW/m2 时,R-513A 的传热系数(HTC)与 R-134a 相当,而在热流量 30 ≥ \(q^{prime\prime}\) ≥ 90 kW/m2 时,无论饱和温度如何,R-513A 的平均 HTC 都比 R-134a 低近 14%。而纯 R-513A 的平均 HTC 比 R-1234ze(E) 高近 13%。此外,还将 R-513A 的 HTC 与其他类似的低全球升温潜能值制冷剂 R-1234yf、R-1234ze(E) 和 R-450A 进行了比较。根据文献综述,R-513A 和 R-1234yf 在池沸腾过程中的传热性能几乎相同。根据沸腾表面和测试装置的不同,R-1234yf 的池沸腾传热性能低于或等于 R-134a。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Pool boiling heat transfer performance of low-GWP refrigerant R-513A on smooth tube

Pool boiling heat transfer performance of low-GWP refrigerant R-513A on smooth tube

This study presents the pool boiling heat transfer performance of R-513A, a low-GWP alternative to R-134a, on a smooth tube at various saturation temperatures. The tests were carried out in the heat flux range of 10 to 90 kW/m2. The experimental results show that at low heat flux \(q^{\prime\prime}\) ≤ 30 kW/m2, the heat transfer coefficient (HTC) of R-513A is equivalent to R-134a, while at heat flux 30 ≥ \(q^{\prime\prime}\) ≥ 90 kW/m2, the average HTC of R-513A is nearly 14% lower than that of R-134a irrespective of all the saturation temperatures. While the average HTC of pure R-513A is nearly 13% higher than that of R-1234ze(E). Further, the HTC of R-513A is compared with other similar alternative low GWP refrigerants R-1234yf, R-1234ze(E), and R-450A. According to the literature review, R-513A and R-1234yf perform almost equally well in terms of heat transfer during pool boiling. Depending on the boiling surface and testing setup, R-1234yf's pool boiling heat transfer performance is either less than or equal to R-134a.

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来源期刊
Heat and Mass Transfer
Heat and Mass Transfer 工程技术-力学
CiteScore
4.80
自引率
4.50%
发文量
148
审稿时长
8.0 months
期刊介绍: This journal serves the circulation of new developments in the field of basic research of heat and mass transfer phenomena, as well as related material properties and their measurements. Thereby applications to engineering problems are promoted. The journal is the traditional "Wärme- und Stoffübertragung" which was changed to "Heat and Mass Transfer" back in 1995.
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