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Vapor-liquid separation of mixtures R134a/R600a at horizontal branch T-junctions

机译:水平分支T型交界处的混合物R134A / R600A的蒸汽分离

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As a promising separator, T-junction can be easily incorporated into the thermodynamic systems. Previous researches have investigated the phase separation of air-water and pure refrigerants but here the separation performance of mixtures at horizontal branch T-junctions is reported. Experiments were conducted to explore the effects of the flow conditions, the mass fractions and the geometric structures on the phase separation of R134a/R600a. During the experiments, the flow parameters including the inlet mass flux, the vapor quality and the mass flow ratio of the branch to the inlet, were varied. Three mixtures with R134a mass fraction 0.3030, 0.5202 and 0.7053 were employed. Furthermore, for the configurations of branching T-junction, the diameter ratio of the branch to the inlet was set to be 0.75 and 1.0, and three branch angles (45 degrees, 90 degrees and 135 degrees) were considered. From the generated data, it was found that the branch outlet quality is always higher than the inlet quality, and the vapor fraction of branch outlet decreases with the increase of inlet vapor quality. The higher the mass flow ratio is, the larger the vapor fraction of R134a/R600a is. Under the experimental conditions, the mixtures with R134a mass fraction 0.3030 and 0.5202 have lower vapor fraction than R134a at inlet quality 0.1-0.5. As for the geometric effects, when the mass flow ratio is relatively large, more vapors usually prefer to flow into the branch with the smaller diameter, and vapor fraction for the angle 45 degrees is lower than those for angles 90 degrees and 135 degrees (C) 2020 Published by Elsevier Ltd.
机译:作为有前途的分离器,可以容易地结合到热力学系统中的T型连接。以前的研究已经研究了空气 - 水和纯制冷剂的相分离,而是报道了水平分支T-结的混合物的分离性能。进行实验以探讨流动条件,质量分数和几何结构对R134A / R600A的相分离的影响。在实验期间,包括入口质量通量,蒸汽质量和分支对入口的质量流量比的流量参数。使用具有R134A质量分数0.3030,0.5202和0.7053的三种混合物。此外,对于分支T接合的配置,将分支与入口的直径比设定为0.75和1.0,并且考虑了三个分支角度(45度,90度和135度)。从所产生的数据,发现分支出口质量总是高于入口质量,并且分支出口的蒸气分数随着入口蒸气质量的增加而降低。质量流量比越高,R134A / R600A的蒸气分数越大。在实验条件下,具有R134A质量分数0.3030和0.5202的混合物比入口质量0.1-0.5的r134a具有较低的蒸气馏分。至于几何效果,当质量流量比相对较大时,通常更倾向于具有较小直径的蒸气流入分支,并且角度45度的蒸气馏分低于90度和135度的角度低(C )2020由elestvier有限公司出版

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