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Experimental Investigation of the Flow of R-134a through Adiabatic and Diabatic Capillary Tubes

机译:R-134a通过绝热和绝热毛细管流动的实验研究

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摘要

This paper presents the experimental investigation of the flow of refrigerant R-134a through adiabatic and diabatic capillary tube operating under similar conditions. The effect of various input parameters, such as capillary tube diameter, capillary tube length, and capillary tube inlet subcooling on the mass flow rate of R- 134a through a capillary tube under adiabatic and diabatic flow conditions, has been studied. The inlet pressure has been kept constant for both types of capillary tube. It has been observed that the suction-line superheat has an interfering effect on the mass flow rate through diabatic capillary tube. The acquired data from the present experimental setup have been analyzed, and separate empirical correlations to predict the mass flow rate through adiabatic and diabatic capillary tubes have been proposed. The mass flow rates predicted by the proposed correlations lie within the error band of ±10%.
机译:本文介绍了在类似条件下通过绝热和绝热毛细管流动的制冷剂R-134a流动的实验研究。研究了在绝热和绝热流动条件下,各种输入参数(例如毛细管直径,毛细管长度和毛细管入口过冷)对通过毛细管的R- 134a的质量流速的影响。两种毛细管的入口压力均保持恒定。已经观察到,吸入管线过热对通过绝热毛细管的质量流率产生干扰作用。分析了从当前实验装置获得的数据,并提出了单独的经验相关性来预测通过绝热和绝热毛细管的质量流量。通过建议的相关性预测的质量流率在±10%的误差带内。

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