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首页> 外文期刊>International Journal of Refrigeration >A proposed subcooling method for vapor compression refrigeration cycle based on expansion power recovery
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A proposed subcooling method for vapor compression refrigeration cycle based on expansion power recovery

机译:一种基于膨胀功率回收的蒸气压缩制冷循环过冷方法

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摘要

This study proposes a new subcooling method for vapor compression refrigeration cycle based on expansion power recovery. In a main refrigeration cycle, expander output power is employed to drive a compressor of the auxiliary subcooling cycle, and refrigerant at the outlet of condenser is subcooled by the evaporative cooler, which makes the hybrid system get much higher COP. Various refrigerants, including R12, R134a, R22, R32, R404A, R41, R507A, R717, and R744, are considered. Thermodynamic analysis is made to discuss the effects of operation parameters (expander efficiency and inlet temperature of cooling water) on the system performance. Results show that the proposed hybrid vapor compression refrigeration system achieves much higher COP than the conventional vapor compression refrigeration system, conventional mechanical subcooling system and conventional expansion power recovery system, with maximum COP increments 67.76%, 19.27% and 17.73%, respectively when R744 works as the refrigerant in the main refrigeration cycle. It is most beneficial for R12 and R717 in the auxiliary subcooling cycle and R744, R404A and R507A in the main refrigeration cycle.
机译:本研究提出了一种基于膨胀功率回收的蒸汽压缩制冷循环过冷新方法。在主制冷循环中,利用膨胀机输出功率来驱动辅助过冷循环的压缩机,冷凝器出口处的制冷剂被蒸发冷却器过冷,这使得混合动力系统获得更高的COP。考虑各种制冷剂,包括R12,R134a,R22,R32,R404A,R41,R507A,R717和R744。进行热力学分析以讨论操作参数(膨胀机效率和冷却水入口温度)对系统性能的影响。结果表明,所提出的混合蒸汽压缩制冷系统比常规蒸汽压缩制冷系统,常规机械过冷系统和常规膨胀功率回收系统具有更高的COP,当R744运行时,其最大COP增量分别为67.76%,19.27%和17.73%。作为主要制冷循环中的制冷剂。在辅助过冷循环中,对于R12和R717以及在主制冷循环中,对于R744,R404A和R507A最有利。

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