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R744 EJECTOR SUPPORTED PARALLEL VAPOUR COMPRESSION SYSTEM

机译:R744弹射器支撑平行蒸汽压缩系统

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The average energy use of European supermarkets is in the range of 300 to 600 kWh/m~2 (Energy star, 2008; Arias, 2005). Around 50% of the energy is used to the refrigeration equipment which provides cooling and freezing capacity for the display cabinets and the cold/freezing storage rooms. Most of the current refrigeration systems are applying HFC 404A as the working fluid. In Accordance to the survey in the latest IPCC/TEAP Special Report (2007), the average annual leakage rates of existing European HFC supermarket units are between 15 and 20% of the total refrigerant charge. On a global perspective the commercial refrigeration leakage rates are around 30%, while HCFC 22 is the most common refrigerant. Therefore, effort should be given to identify alternative refrigerants which are able to improve the energy efficiency compared to current HFC solutions. Preference should be given to natural working fluids, since their long term environmental impact can be foreseen and they minimize the direct GWP contribution. Currently there are more than 2000 commercial refrigeration system, applying carbon dioxide (R744), manly located in Central- and Northern Europe. The efficiency challenge related to ordinary R744 booster systems operated at high ambient temperatures (Finckh, 2011) can be overcome by an improved system design as described in this paper. As one possible example, an enhanced R744 commercial refrigeration system with parallel compressor technology and ejector support is described, as implemented in a large supermarket in the region of Fribourg (Switzerland) during summer 2013. First measurement results are analysed and evaluated.
机译:欧洲超市的平均能源使用范围为300至600千瓦时/ m〜2(Energy Star,2008; Arias,2005)。大约50%的能量用于制冷设备,为展示柜和冷/冻储藏室提供冷却和冷冻能力。大多数当前的制冷系统是将HFC 404a施加为工作流体。根据最新IPCC / TEAP特别报告(2007年)的调查,现有欧洲恒生超市单位的平均年漏率为15至20%的制冷剂充电。在全球视角下,商业制冷泄漏率约为30%,而HCFC 22是最常见的制冷剂。因此,应省略措施来识别能够与当前的HFC溶液相比改善能量效率的替代制冷剂。应优选自然工作流体,因为它们的长期环境影响可以预见,最大限度地减少直接的GWP贡献。目前有2000多个商业制冷系统,应用二氧化碳(R744),位于欧洲中部和北欧。通过如本文所述的改进的系统设计,可以克服与高环境温度(FINCKH,2011)操作的普通R744增强系统相关的效率挑战。作为一个可能的示例,描述了一种具有平行压缩机技术和喷射器支持的增强的R744商业制冷系统,如2013年夏季在Friborg(瑞士)的大型超市中所实施的。分析和评估第一测量结果。

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