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Field measurements of supermarket refrigeration systems. Part II: Analysis of HFC refrigeration systems and comparison to CO2 trans-critical

机译:超级市场制冷系统的现场测量。第二部分:氢氟碳化合物制冷系统分析和与跨临界二氧化碳的比较

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摘要

This part of the study investigates the performance of HFC refrigeration systems for supermarkets and compares the performance with alternative CO2 trans-critical solutions. The investigated HFC system solutions are typical in supermarkets in Sweden. The analysis in this study is based on field measurements which were carried out in three supermarkets in Sweden. The results are compared to the findings from Part I of this study where five CO2 trans-critical systems were analyzed. Using the field measurements, low and medium temperature level cooling demands and COP’s are calculated for five-minute intervals, filtered and averaged to monthly values. The different refrigeration systems are made comparable by looking at the different COP’s versus condensing temperatures. The field measurement analysis is combined with theoretical modelling where the annual energy use of the HFC and CO2 trans-critical refrigeration systems is calculated. Comparing the field measurement and modelling results of COP’s for HFC and CO2 systems, the new CO2 systems have higher total COP than HFC systems for outdoor temperatures lower than about 24 C. The modelling is used to calculate the annual energy use of HFC and new CO2 system in an average size supermarket in Stockholm, new CO2 systems use about 20% less energy than a typical HFC system. The detailed analysis done in this study (Part I and Part II) proves that new CO2 trans-critical refrigeration systems are more energy efficient solutions for supermarkets than typical HFC systems in Sweden.
机译:研究的这一部分调查了超级市场的​​HFC制冷系统的性能,并将其与替代CO2超临界解决方案的性能进行了比较。被调查的HFC系统解决方案在瑞典的超级市场中很典型。这项研究中的分析基于在瑞典的三个超市中进行的现场测量。将结果与本研究的第一部分的发现进行了比较,该部分分析了五个CO2跨临界系统。使用现场测量,以五分钟为间隔计算中低温度水平的冷却需求和COP,将其过滤并平均为每月值。通过查看不同的COP和冷凝温度,可以使不同的制冷系统具有可比性。现场测量分析与理论模型相结合,可以计算出HFC和CO2超临界制冷系统的年度能耗。比较HFC和CO2系统的COP的现场测量结果和建模结果,对于室外温度低于约24 C的情况,新的CO2系统的总COP高于HFC系统。该模型用于计算HFC和新的CO2的年能耗在斯德哥尔摩一家中等规模的超级市场中,新的二氧化碳系统比典型的氢氟碳化合物系统能耗低约20%。这项研究(第一部分和第二部分)进行的详细分析证明,与瑞典的典型HFC系统相比,新型的CO2超临界制冷系统对超市而言是更节能的解决方案。

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