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Modelling the performance of a new cooling unit for refrigerated transport using carbon dioxide as the refrigerant

机译:使用二氧化碳作为制冷剂模拟新型冷却装置的性能

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摘要

This paper provides a theoretical assessment of the thermal performance of a new CO2 vapour-compression system for refrigerated transport applications. Three different configurations are investigated: the standard back-pressure with low pressure receiver lay-out and two arrangements integrating a two-phase ejector. In particular, the use of an auxiliary evaporator in the outlet line of the ejector is considered, to extend the ejector operating range. A numerical model of the system is developed and its theoretical performance is discussed for different values of internal space temperature and external ambient temperature. Simulations' results show that the ejector cycle configuration is convenient when the system is operating in a hot climate with a maximum COP increase (compared to the traditional configuration) equal to 15.9%, at 42 degrees C ambient temperature and -5 degrees C internal space temperature. The use of an auxiliary evaporator can extend the operating range of the ejector to lower values of ambient temperature, with a maximum COP improvement (over the traditional configuration) equal to 21.0% at 25 degrees C ambient temperature and 5 degrees C internal cargo space. (C) 2020 Elsevier Ltd and IIR. All rights reserved.
机译:本文提供了用于冷藏运输应用的新CO2蒸汽压缩系统的热性能的理论评估。研究了三种不同的配置:具有低压接收器的标准背压,与两相喷射器集成的两个布置。特别地,考虑在喷射器的出口线中使用辅助蒸发器,以延长喷射器操作范围。开发了一种系统的数值模型,其对内部空间温度和外部环境温度的不同值讨论了其理论性能。仿真结果表明,当系统在热气氛中运行时,喷射器周期配置方便,当最大COP(与传统配置相比)等于15.9%,在42摄氏度和-5摄氏度内部空间温度。辅助蒸发器的使用可以将喷射器的操作范围延伸到较低的环境温度值,最大COP改善(在传统配置上)等于25℃的环境温度和5摄氏度的内部货物空间。 (c)2020 Elsevier Ltd和IIR。版权所有。

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