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Prospect of solar-driven ejector-compression hybrid refrigeration system with low GWP refrigerants in summer of Guangzhou and Beijing

机译:广州和北京夏季低GWP制冷剂太阳能驱动的喷射器压缩混合制冷系统的前景

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In this paper, the prospect of low-GWP refrigerants used in solar-driven ejector-compression hybrid refrigeration system was analyzed and evaluated based on the solar radiation data in summer of Beijing and Guangzhou. Prominent environmental friendly alternative refrigerants, including HCFO-1233zd(E), HFO-1336mzz(Z), HFO-1234ze(Z), HCFO-1224yd(Z) and HC-600 were chosen as the working fluids to address the environmental concerns, while HFC-245fa was used as the baseline refrigerant. The hybrid refrigeration system composed of an ejector refrigeration system as the upper stage and a vapor compression system as the bottom stage, respectively. The results indicated that the system with HFO-1234ze(Z) showed the highest COP. HFO-1234ze(Z) was followed by HCFO-1233zd(E) and HC-600, and all of them showed higher COP than that of HFC-245fa. The system with HC-600 needed more electric energy than any other systems, while HFO-1336mzz(Z) consumed the lowest electric power. Meanwhile, the performances of HFO-1234ze(Z) and HFC-245fa systems were further compared. It was found that for both working fluids, the heat load of the condenser (Q(e,c)), total electric energy consumption (W-e) and electric energy of compressor (W-com) in August were the highest in Beijing, while in Guangzhou, the highest of them was achieved in September. It was also suggested that the solar radiation had no influence on the relative magnitude of the Q(e)(,c), W-e and W-com. between HFO-1234ze(Z) and HFC-245fa systems. The Q(e,c), W-e and W-com of the system with HFO-1234ze(Z) were higher than those of HFC-245fa by 0.8%, 4.44%, and 3.55%, respectively. (C) 2020 Elsevier Ltd and IIR. All rights reserved.
机译:本文基于北京和广州夏季的太阳辐射数据分析和评估了太阳能驱动的喷射器 - 压缩混合混合制冷系统的低GWP制冷剂的前景。突出的环保替代制冷剂,包括HCFO-1233ZD(E),HFO-1336MZZ(Z),HFO-1234ze(Z),HCFO-1224YD(Z)和HC-600作为工作流体,以解决环境问题, HFC-245FA用作基线制冷剂。混合制冷系统分别由喷射器制冷系统组成,作为上级和蒸汽压缩系统作为底部级。结果表明,具有HFO-1234ze(Z)的系统显示了最高的警察。 HFO-1234ze(Z)之后是HCFO-1233ZD(e)和HC-600,所有HC-600都显示出比HFC-245FA的COP更高。具有HC-600的系统需要比任何其他系统更多的电能,而HFO-1336MZZ(Z)消耗最低电力。同时,进一步比较了HFO-1234ze(Z)和HFC-245FA系统的性能。发现,对于工作流体,冷凝器的热负荷(Q(Q(e,c)),8月份的压缩机总电能消耗(我们)和电能(W-Com)的电能是北京最高的在广州,其中最多是9月取得的。还提出了太阳辐射对Q(e)(,c),w-e和w-com的相对幅度没有影响。在HFO-1234ze(Z)和HFC-245FA系统之间。用HFO-1234ze(Z)的系统的Q(E,C),W-E和W-COM分别高于HFC-245FA,分别为0.8%,4.44%和3.55%。 (c)2020 Elsevier Ltd和IIR。版权所有。

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