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Development of Low Global Warming Potential Refrigerant Solutions for Commercial Refrigeration Systems using a Life Cycle Climate Performance Design Tool

机译:使用生命周期气候性能设计工具为商业制冷系统开发低全球变暖潜能制冷剂解决方案

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Commercial refrigeration systems are known to be prone to high leak rates and to consume large amounts of electricity. As such, both the direct emissions related to refrigerant leakage and the indirect emissions resulting from primary energy consumption contribute greatly to their Life Cycle Climate Performance (LCCP). In this paper, an LCCP design tool is used to evaluate the performance of a typical commercial refrigeration system with alternative refrigerants and minor system modifications to provide lower Global Warming Potential (GWP) refrigerant solutions with improved LCCP compared to baseline systems. The LCCP design tool accounts for system performance, ambient temperature, and system load; system performance is evaluated using a validated vapor compression system simulation tool while ambient temperature and system load are devised from a widely used building energy modeling tool (EnergyPlus). The LCCP design tool also accounts for the change in hourly electricity CO_2 emission rates to yield an accurate prediction of indirect emissions. The analysis shows that conventional commercial refrigeration system life cycle emissions are largely due to direct emissions associated with refrigerant leaks and that system efficiency plays a smaller role in the LCCP. However, as a transition occurs to low GWP refrigerants, the indirect emissions become more relevant. Low GWP refrigerants may not be suitable for drop-in replacements in conventional commercial refrigeration systems; however some mixtures may be introduced as transitional drop-in replacements. These transitional refrigerants have a significantly lower GWP than baseline refrigerants and as such, improved LCCP. The paper concludes with a brief discussion on the tradeoffs between refrigerant GWP, efficiency and capacity.
机译:已知商业制冷系统易于发生高泄漏率并消耗大量电力。因此,与制冷剂泄漏有关的直接排放和由一次能源消耗引起的间接排放都对其生命周期气候绩效(LCCP)做出了很大的贡献。在本文中,LCCP设计工具用于评估具有替代制冷剂和较小系统修改的典型商用制冷系统的性能,以提供比基准系统更低的全球升温潜能值(GWP)制冷剂解决方案,并具有改进的LCCP。 LCCP设计工具考虑了系统性能,环境温度和系统负载。使用经过验证的蒸汽压缩系统仿真工具评估系统性能,同时使用广泛使用的建筑能源建模工具(EnergyPlus)设计环境温度和系统负载。 LCCP设计工具还考虑了每小时电力CO_2排放率的变化,以产生对间接排放的准确预测。分析表明,传统的商用制冷系统生命周期排放主要是由于与制冷剂泄漏相关的直接排放,并且系统效率在LCCP中的作用较小。但是,随着向低全球升温潜能值的制冷剂过渡,间接排放变得越来越重要。全球升温潜能值低的制冷剂可能不适合常规商业制冷系统中的即插即用替代品;但是,可能会引入一些混合物作为过渡的替代产品。这些过渡制冷剂的全球升温潜能值明显低于基准制冷剂,因此改善了LCCP。本文最后简要讨论了制冷剂GWP,效率和容量之间的折衷。

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