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A comparison of flow characteristics of refrigerants flowing through adiabatic straight and helical capillary tubes

机译:流过绝热直管和螺旋管的制冷剂的流动特性比较

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This paper presents a numerical investigation of the flow characteristics of helical capillary tubes compared with straight capillary tubes. The homogenous two-phase flow model developed is based on the conservation of mass, energy, and momentum of the fluids in the capillary tube. This model is validated by comparing it with the experimental data of both straight and helical capillary tubes. Comparisons of the predicted results between the straight and helical capillary tubes are presented, together with the experimental results for straight capillary tubes obtained by previous researchers. The results show that the refrigerant flowing through the straight capillary tube provides a slightly lower pressure drop than that in the helical capillary tube, which resulted in a total tube length that was longer by about 20%. In addition, for the same tube length, the mass flow rate in the helical capillary tube with a coil diameter of 40 mm is 9% less than that in the straight tube. Finally, the results obtained from the present model show reasonable agreement with the experimental data of helical capillary tubes and can also be applied to predict the flow characteristics of straight capillary tubes by changing to straight tube friction factors, for which Churchill's equation was used in the present study.
机译:本文对螺旋毛细管与直管相比的流动特性进行了数值研究。建立的均相两相流模型基于毛细管中流体的质量,能量和动量守恒。通过与直管和螺旋毛细管的实验数据进行比较,验证了该模型。提出了直毛细管和螺旋毛细管之间的预测结果的比较,以及以前的研究人员获得的直毛细管的实验结果。结果表明,流过笔直毛细管的制冷剂比螺旋毛细管的压降略低,从而导致总管长延长了约20%。另外,对于相同的管长,盘管直径为40 mm的螺旋毛细管的质量流量比直管的质量流量小9%。最后,从本模型中获得的结果与螺旋毛细管的实验数据显示出合理的一致性,并且还可以通过更改为直管摩擦系数而用于预测直毛细管的流动特性,为此在模型中使用了丘吉尔方程。目前的学习。

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