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Energy and environmental comparison of two-stage solutions for commercial refrigeration at low temperature: Fluids and systems

机译:低温商业制冷两阶段解决方案的能源和环境比较:流体和系统

摘要

International agreements will restrict in the near future the use of high-GWP refrigerants in Europe. These restrictions will favour the implantation of refrigeration systems with low-GWP fluids, especially in applications with high leakage rate. To clarify possible solutions that accomplish the forthcoming F-Gas Regulation, we present simplified models of five two-stage vapour compression refrigeration systems and evaluate them with low-GWP refrigerants (HFC, HFO and naturals). We analyse the energy performance over a wide range of evaporating and environment temperatures and present the TEWI analysis under a same scenario, typical of a centralized commercial refrigeration application. We conclude that, for high-GWP refrigerants, direct emissions have greater weight in TEWI than the indirect ones, so future solutions might be based on low-GWP fluids, in some cases with risk of toxicity or flammability. We observe the indirect two-stage systems (cascades) with CO2 as low temperature fluid are promising solutions, especially for warm regions.
机译:国际协议将在不久的将来限制欧洲使用全球升温潜能值高的制冷剂。这些限制将有利于用低GWP流体植入制冷系统,尤其是在泄漏率较高的应用中。为了阐明实现即将到来的F-Gas法规的可能解决方案,我们介绍了五个两级蒸气压缩制冷系统的简化模型,并使用低GWP制冷剂(HFC,HFO和天然气)进行了评估。我们分析了各种蒸发温度和环境温度下的能源性能,并在相同的情况下展示了TEWI分析,这是集中式商业制冷应用的典型代表。我们得出的结论是,对于高全球升温潜能值的制冷剂,直接排放在TEWI中比间接排放具有更大的权重,因此未来的解决方案可能基于低全球升温潜能值的流体,在某些情况下有毒性或可燃性的风险。我们观察到以低温流体为二氧化碳的间接两级系统(叶栅)是有前途的解决方案,尤其是在温暖地区。

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