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Retrofit of lower GWP alternative R449A into an existing R404A indirect supermarket refrigeration system

机译:将较低GWp替代品R449a改造为现有的R404a间接超市制冷系统

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摘要

R404A is going to be phased out from most of the commercial refrigeration systems due to its high GWP value of 3943. R449A (GWP of 1282) has been proposed to replace R404A with only minor system modifications in supermarkets. This paper presents the measurements of a light retrofit replacement of R404A using R449A in a medium temperature indirect refrigeration system (secondary fluid temperature at the evaporator outlet between −9 and −4 °C). It has been demonstrated that with a slight expansion device adjustment and 4% increase of refrigerant charge, R449A can be used in this refrigeration system designed for R404A because of its suitable thermodynamic properties and acceptable maximum discharge temperature. At a secondary fluid temperature at condenser inlet of 30 °C, the COP of R449A nearly matches that of R404A (both were between 1.9 and 2.2), despite having approximately 13% lower cooling capacity. As a conclusion, attending to the GWP reduction and similar energy performance, it was demonstrated using the TEWI methodology that the use of the recently developed refrigerant R449A in these applications can reduce the total CO2 equivalent emissions of an indirect supermarket refrigeration system designed for R404A refrigerant.
机译:由于R404A具有3943的高GWP值,因此将从大多数商用制冷系统中逐步淘汰。R449A(GWP为1282)已被提议用超市中的少量系统修改来代替R404A。本文介绍了在中温间接制冷系统(蒸发器出口处的二次流体温度在-9和-4°C之间)中使用R449A轻巧替代R404A的测量结果。已经证明,通过略微调节膨胀装置和增加4%的制冷剂充注量,R449A可以在此为R404A设计的制冷系统中使用,因为它具有合适的热力学性能和可接受的最高排放温度。在冷凝器入口处的二次流体温度为30 C时,R449A的COP几乎与R404A的COP相匹配(均在1.9和2.2之间),尽管冷却能力降低了约13%。结论是,在降低全球升温潜能值和类似的能源性能的同时,使用TEWI方法论证了在这些应用中使用最新开发的R449A制冷剂可以减少为R404A制冷剂设计的间接超市制冷系统的总CO2当量排放量。 。

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