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Boiling heat transfer coefficient and pressure drop of R1234yf flow inside smooth flattened tubes: An experimental study

机译:沸腾的传热系数和R1234YF流动压力下降流平滑扁平管:实验研究

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摘要

In this study, the boiling flow of R1234yf inside flattened tubes is experimentally investigated to determine the heat transfer coefficient and pressure drop. The experiments were carried out on a round tube of 8.2 inner diameter and three flattened tubes with internal heights of 6.2, 5.1 and 2.8 (aspect ratios of 1.5, 2, and 4), with mass velocities between 110 and 410 kg/m(2)s, and vapor qualities between 0.1 and 0.9. The experimental data were analyzed to determine the effect of vapor quality, mass velocity, and flattening the tubes on the heat transfer coefficient and pressure drop. Also, the performance evaluation criterion (PEC) was used to investigate the effect of flattening on the heat transfer coefficient and pressure drop simultaneously. The results showed that for the flattened tubes with 1.5, 2, and 4 aspect ratios, the heat transfer coefficient enhances up to 53%, 99%, and 154%; while the pressure drop increases up to 54%, 167%, and 270%, respectively, compared to those of the round tube. In addition, according to the results, the enhancement factor increases with the aspect ratio, and the tube with the aspect ratio of 2 showed the highest PEC at high mass velocities.
机译:在这项研究中,实验研究了扁平管内R1234YF的沸腾流动以确定传热系数和压降。实验在8.2内径的圆形管上进行,并具有6.2,5.1和2.8的内部高度的三个扁平管(1.5,2和4)的内部高度,质量速度在110和410kg / m之间(2 )S,蒸气质量在0.1和0.9之间。分析了实验数据以确定蒸汽质量,质量速度和压平管对传热系数和压降的影响。而且,性能评估标准(PEC)用于研究同时扁平化趋势对传热系数和压降的影响。结果表明,对于1.5,2和4个纵横比的扁平管,传热系数可增强高达53%,99%和154%;与圆管相比,压降分别增加高达54%,167%和270%。另外,根据结果,增强因子随着纵横比而增加,纵横比2的管子显示在高质量速度下的最高PEC。

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