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Thermodynamic analysis of a diabatic two-phase flow for a pure refrigerant and a refrigerant/oil mixture under equilibrium conditions

机译:平衡条件下纯制冷剂和制冷剂/油混合物的非绝热两相流热力学分析

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摘要

Two different definitions of the vapor quality during a diabatic two-phase flow with and without the presence of oil are presented in this paper: the well-known vapor flow quality and the thermodynamic vapor quality. The vapor flow quality is based on the mass flow rates whereas the thermodynamic vapor quality is based on the mass. Two-phase thermodynamic diagrams for pure R-134a and R-134a/oil mixture are plotted for different slip ratios. It is shown that the iso-flow quality lines are moved to lower enthalpies for larger slip ratios. In addition, the maximum vapor flow quality of a fluid/oil mixture is shown to increase when increasing the slip ratio whereas the maximum thermodynamic vapor quality remains constant. In addition, the correct expression of the elementary derivative of the vapor quality is also proposed, highlighting the role of the heat capacity at constant vapor quality.
机译:本文提出了在有油和无油的情况下,在非绝热两相流中蒸气质量的两种不同定义:众所周知的蒸气流动质量和热力学蒸气质量。蒸气流量质量基于质量流率,而热力学蒸气质量基于质量流率。针对不同的滑移率绘制了纯R-134a和R-134a /油混合物的两相热力学图。结果表明,对于较大的滑移率,等流量质量线移动到较低的焓。另外,当增加滑移率时,流体/油混合物的最大蒸气流质量显示出增加,而最大热力学蒸气质量保持恒定。此外,还提出了蒸气质量基本导数的正确表达,突出了恒定蒸气质量下热容量的作用。

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