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Design and experimental analysis of a carbon dioxide transcritical chiller for commercial refrigeration

机译:商用制冷用二氧化碳超临界冷却器的设计与实验分析

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摘要

Carbon dioxide is an interesting solution for commercial refrigeration and in perspective for air-conditioning systems. In this paper a newly developed carbon dioxide transcritical air cooled chiller for refrigerating propylene glycol down to -8 ℃ supply temperature is described. The aim of the project was at optimising the cycle energy efficiency while assuring reliable operation and simple management of the unit. The carbon dioxide optimal pressure issue is addressed with an innovate system architecture and control logic. Using a flash tanks and two electronic valves, the optimal cycle upper pressure was maintained in transcritical operation mode. The managing of the valves allows the refrigeration machine efficiency improvement when the gas cooler inlet air allows subcritical working conditions. A simulation model of the chiller was developed and its results validated with experimental data. A measurement campaign was carried out, testing the chiller at external temperatures ranging from 18 to 35 ℃, the unit energy efficiency ranging from 3.1 to 2.0.
机译:二氧化碳是用于商业制冷以及空调系统的有趣解决方案。本文介绍了一种新开发的二氧化碳超临界空气冷却式冷水机组,用于将丙二醇冷冻至供应温度为-8℃。该项目的目的是优化循环能效,同时确保设备的可靠运行和简单管理。创新的系统架构和控制逻辑解决了二氧化碳最佳压力问题。使用闪蒸罐和两个电子阀,在跨临界运行模式下可保持最佳循环上限压力。当气体冷却器的进气允许亚临界工作条件时,阀门的管理可提高制冷机的效率。开发了冷却器的仿真模型,并用实验数据验证了其结果。开展了一项测量活动,在18至35℃的外部温度下测试了该冷水机,单位能效从3.1到2.0。

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