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Flow boiling heat transfer of R1234yf inside a 3.4 mm ID microfin tube

机译:内径3.4 mm的微翅片管中R1234yf的流沸腾传热

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摘要

This paper presents experimental results about the flow boiling of R1234yf inside a mini microfin tube. R1234yf is a Hydro Fluoro Olefin with a GWP < 1, and thus it has recently been proposed as one of the possible substitutes of the common R134a. This study was carried out in a facility located at the Dipartimento di Ingegneria Industriale of University of Padova. The microfin tube has an inner diameter at the fin tip of 3.4 mm, an outer diameter of 4.0 mm, it has 40 fins and each fin is 0.12 mm high. From the experimental measurements, it was possible to calculate the heat transfer coefficients, frictional pressure drops, and vapour qualities at the onset of the dryout phenomenon. The mass velocity was varied from 190 to 940 kg m(-2) S-1, the heat flux from 10 to 50 kW m(-2), the vapour quality from 0.10 to 0.99, and the saturation temperature at the inlet of the test section was kept constant and equal to 30 degrees C. The experimental results were also compared against the values predicted by empirical correlations available in the open literature. (C) 2015 Elsevier Inc. All rights reserved.
机译:本文介绍了有关R1234yf在微型微翅管内流动沸腾的实验结果。 R1234yf是一种GWP <1的氢氟烯烃,因此最近被提出作为普通R134a的可能替代品之一。这项研究是在帕多瓦大学工业学院的一个分部进行的。微翅片管的翅片尖端的内径为3.4毫米,外径为4.0毫米,它有40个翅片,每个翅片的高度为0.12毫米。从实验测量中,可以计算出发生变干现象时的传热系数,摩擦压降和蒸汽质量。质量速度从190到940 kg m(-2)S-1变化,热通量从10到50 kW m(-2)变化,蒸汽质量从0.10到0.99变化,并且进料口的饱和温度测试部分保持恒定且等于30摄氏度。还将实验结果与公开文献中的经验相关性预测的值进行比较。 (C)2015 Elsevier Inc.保留所有权利。

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