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Flow characteristics of pure refrigerants and refrigerant mixtures in adiabatic capillary tubes

机译:绝热毛细管中纯制冷剂和制冷剂混合物的流动特性

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This paper provides the results of simulations using an adiabatic capillary tube model which is developed to study the flow characteristics in adiabatic capillary tubes used as s refrigerant control device in refrigerating systems. The developed model can be considered as an effective tool of capillary tubes' design and optimization for systems using newer alternative refrigerants. The model is validated by comparing with the experimental data of Li et al. and Mikol for R12 and Melo et al. for R134a. In particular, it has been possible to compare various pairs of refrigerants. It is found that the conventional refrigerants consistently give longer capillary lengths than the alternative refrigerants. For all pairs, the conventional refrigerant consistently give lower pressure drops for both single-phase and two-phase flow which resulted in longer tube lengths. In addition, an example of capillary tube selection chart developed from the present numerical simulation is shown. The chart can be practically used to select the capillary tube size from the flow rate and flow condition or to determine mass flow rate directly from a given capillary tube size and flow condition. The results of this study are of technological importance for the efficient design when systems are assigned to utilize various alternative refrigerants.
机译:本文提供了使用绝热毛细管模型进行仿真的结果,该模型被开发用于研究在制冷系统中用作制冷剂控制装置的绝热毛细管的流动特性。对于使用更新的替代制冷剂的系统,开发的模型可以被视为毛细管设计和优化的有效工具。通过与Li等人的实验数据进行比较来验证该模型。 R12和Melo等人则是Mikol。用于R134a。特别地,可以比较各种制冷剂对。已经发现,常规制冷剂始终比替代制冷剂具有更长的毛细管长度。对于所有对,常规制冷剂对于单相流和两相流始终会产生较低的压降,从而导致更长的管长。另外,示出了根据当前数值模拟开发的毛细管选择图的示例。该图表实际上可用于从流速和流动条件中选择毛细管尺寸,或直接从给定的毛细管尺寸和流动条件中确定质量流速。当分配系统以使用各种替代制冷剂时,这项研究的结果对于有效设计具有技术重要性。

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