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首页> 外文期刊>International Journal of Refrigeration >Experimental investigation of two-phase flow characteristics of HFC-134a through short-tube orifices
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Experimental investigation of two-phase flow characteristics of HFC-134a through short-tube orifices

机译:HFC-134a通过短管孔的两相流动特性的实验研究

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摘要

The two-phase flow characteristics of HFC-134a, including flow pattern, mass flow rate, pressure distribution and temperature distribution through short-tube orifices are experimentally investigated. Short tube diameters ranging between 0.605 and 1.2 mm with length-to-diameter ratios ranging between 8.3 and 33 are used in the experiments. The test runs are performed at upstream pressure, ranging between 900 and 1300 kPa, downstream pressure ranging between 300 and 400 kPa, and degree of subcooling ranging between 1 and 12℃. Two groups of short-tube orifices are used in the experiment. The first is used to visualise the flow pattern. The second is used to measure temperature and pressure distributions along the tube. The results from the present experiment show that metastable flow and choked flow phenomena exist inside the short-tube orifices over the whole range of experimental conditions. The metastable liquid flow region increases with increasing degree of subcooling and upstream pressure. The mass flow rate is directly proportional to upstream pressure and degree of subcooling. The results of pressure distribution inside the short-tube orifices indicate that accelerational pressure drop at the inlet and outlet has a significant effect on the total pressure drop across the short-tube orifice. 0esomchai.won@kmutt.ac.th (S. Wongwises)
机译:实验研究了HFC-134a的两相流特性,包括流型,质量流率,压力分布和通过短管孔的温度分布。实验中使用的短管直径在0.605至1.2 mm之间,长径比在8.3至33之间。试验在上游压力900至1300 kPa,下游压力300至400 kPa,过冷度1至12℃的条件下进行。实验中使用了两组短管孔。第一个用于可视化流动模式。第二个用于测量沿管的温度和压力分布。本实验的结果表明,在整个实验条件范围内,短管孔内都存在亚稳态流动和节流现象。亚稳态液体流动区域随着过冷度和上游压力的增加而增加。质量流率与上游压力和过冷度成正比。短管孔内压力分布的结果表明,入口和出口处的加速压降对跨短管孔的总压降有重大影响。 0esomchai.won@kmutt.ac.th(S. Wongwises)

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