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Thermodynamic analysis of transcritical CO_2 booster refrigeration systems in supermarket

机译:超市跨临界CO_2增压制冷系统的热力学分析

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摘要

Due to less environmental impact, the CO_2 booster refrigeration system has been widely applied in the modern supermarket as a substitute for the conventional R404A multiplex system. However, the performance efficiency of the CO_2 system still requires further improvement in order to save energy; thus, one of the most efficient techniques would be to investigate and employ the optimal controls for refrigerant high side pressures at various operating states. In this paper, the possible parameters affecting system efficiency of the CO_2 system in the transcritical cycle at a higher ambient air temperature are identified through thermodynamic analysis, but cannot be quantified mathematically because of the high non-linearity involved. Instead, sensitive analyses of the system by means of the thermodynamic model is used to examine the effects of parameters including high side refrigerant pressure, ambient air temperature, refrigerant intermediate pressure, and medium and low evaporating temperatures, superheating, effectiveness of suction line heat exchanger, and compressor efficiency on system performance. Consequently, the optimal high side pressure in the transcritical cycle is established and derived as a function of three important parameters consisting of ambient air temperature, the effectiveness of suction line heat exchanger and compressor efficiency. In addition, optimal operating parameters such as the intermediate pressure are also proposed to improve the system performance.
机译:由于对环境的影响较小,CO_2增压制冷系统已在现代超市中得到广泛应用,以代替常规R404A多重系统。然而,为了节省能源,CO_2系统的性能效率仍需要进一步提高。因此,最有效的技术之一将是研究并采用各种操作状态下制冷剂高压侧压力的最佳控制方法。在本文中,通过热力学分析确定了在较高环境空气温度下影响跨临界循环中CO_2系统效率的可能参数,但是由于涉及到很高的非线性度,因此无法进行数学量化。取而代之的是,通过热力学模型对系统进行灵敏的分析,以检查参数的影响,这些参数包括高压侧制冷剂压力,环境空气温度,制冷剂中压以及中低蒸发温度,过热度,吸气管热交换器的效率,以及压缩机效率对系统性能的影响。因此,跨临界循环中的最佳高压侧压力是根据环境温度,吸气管换热器的效率和压缩机效率这三个重要参数确定并得出的。此外,还提出了最佳操作参数(例如中间压力)以提高系统性能。

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