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Energy and exergy analysis of an air-source heat pump water heater system using CO2/R170 mixture as an azeotropy refrigerant for sustainable development

机译:使用CO2 / R170混合物作为可持续发展的共沸制冷剂的空气源热泵热水器系统的能量和暴力分析

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In this paper, the azeotropic mixture of CO2/R170 (0.78/0.22, mass fraction) is presented as a refrigerant to replace R134a in an ASHPWH system. On the basis of the first and second laws of thermodynamics, system performance and the exergy efficiency analysis are carried out for the system using both refrigerants. The results show that both the COPheat (coefficient of heating performance) and exergy efficiency of the system using the CO2/R170 mixture refrigerant are higher than that using the R134a, and the values can be increased by 31.3% and 30.6%, respectively. Moreover, the compressor discharge temperature for CO2/R170 is about 34.3-49.8 degrees C lower and the compression ratio of compressor also has a significant reduction (from 12.0417 to 3.2734), which leads to a higher lifetime for the compressors. So, the CO2/R170 mixture may be a good choice to substitute for R134a in ASHPWH systems. Also, a CO2/R170 ASHPWH system may be more suitable in cold region. (C) 2019 Elsevier Ltd and IIR. All rights reserved.
机译:在本文中,将CO 2 / R170(0.78 / 0.22,质量分数)的共沸混合物作为制冷剂呈现,以替代ASHPWH系统中的R134A。根据热力学的第一和第二律规律,使用两个制冷剂的系统进行系统性能和漏洞效率分析。结果表明,使用CO2 / R170混合物制冷剂的系统的COPHEAT(加热性能系数)和漏洞效率高于使用R134A的效率,并且分别增加了31.3%和30.6%。此外,CO2 / R170的压缩机放电温度为约34.3-49.8℃,压缩机的压缩比也具有显着的减少(从12.0417至3.2734),这导致压缩机的寿命更高。因此,CO2 / R170混合物可能是替代ASHPWH系统中的R134a的良好选择。而且,CO2 / R170 ASHPWH系统可以更适合于寒冷区域。 (c)2019年Elsevier Ltd和IIR。版权所有。

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