Hybrid Supermarket System Using GWP Refrigerants

G. Goletiani, T. Isakadze, G. Gugulashvili
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Abstract

Global pressure has intensified to reduce the use of R404a with high global warming potential and relatively high leak rates in supermarket systems. In Europe, several design modifications such as cascade systems and new refrigerant choices are being investigated. One of the new leading options is to utilize a hybrid cascade system using CO2 in low temperature refrigeration circuit and R134a in medium temperature. R134a has higher efficiency than R404a and about one third the direct global warming potential (GWP). To make even greater gains in GWP reduction, a new lower GWP refrigerant has been developed that is retrofittable in the medium temp R134a circuit with minimal system changes. This refrigerant has less than half the GWP of R134a and is also non-flammable. This paper will show results of experimental calorimeter and supermarket system performance. A TEWI analysis will also be presented to demonstrate the significant reduction in environmental impact if XP10 is used in a hybrid cascade system with CO2.
使用GWP制冷剂的混合超市系统
全球要求减少超市系统中使用具有高全球变暖潜势和相对高泄漏率的R404a的压力已经加大。在欧洲,一些设计修改,如梯级系统和新的制冷剂选择正在研究中。一种新的领先选择是利用混合级联系统,在低温制冷回路中使用CO2,在中温回路中使用R134a。R134a的效率高于R404a,约为直接全球变暖潜能值(GWP)的三分之一。为了在降低GWP方面取得更大的收益,一种新的低GWP制冷剂已经开发出来,可以在中温R134a电路中进行改造,并且系统变化最小。这种制冷剂的GWP值不到R134a的一半,而且不易燃。本文将展示热量计的实验结果和超市系统的性能。TEWI分析还将展示,如果XP10用于二氧化碳混合级联系统,将显著减少对环境的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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