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Numerical modeling of two-phase refrigerant flow through adiabatic capillary tubes

机译:两相制冷剂流经绝热毛细管的数值模拟

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Literature shows that the homogeneous flow assumption has been commonly used in most of the adiabatic capillary tube modeling studies due to its simplicity. The slip effect between the two phase was often not considered in this small diameter capillary tube. This paper attempts to exploit the possibility of applying the equilibrium two-phase drift flux model to simulate the flow of refrigerant in the capillary tube expansion devices. Attempts have been made to compare predictions with experimental results. The details flow characteristics of R134a in a capillary tube, such as distribution of pressure, void fraction, dryness fraction, phase's velocities and their drift velocity relative to the center of the mass of the mixture are presented.
机译:文献表明,由于绝热毛细管建模的简单性,均质流动假设已被广泛用于绝热毛细管建模研究中。在这种小直径毛细管中,通常不考虑两相之间的滑动效应。本文试图探索利用平衡两相漂移通量模型模拟毛细管膨胀装置中制冷剂流动的可能性。已尝试将预测结果与实验结果进行比较。给出了R134a在毛细管中的详细流动特性,例如压力分布,空隙率,干燥率,相速度及其相对于混合物质心的漂移速度。

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