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Energy, exergy, economic and environmental analysis of refrigerant charge in air source transcritical carbon dioxide heat pump water heater

机译:空气源跨临界二氧化碳热泵热泵热泵热水器中制冷剂电荷的能量,高度,经济和环境分析

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摘要

Currently, the air source transcritical carbon dioxide heat pump is extensively used for water heating. The refrigerant charge plays a significant role in optimizing system performance. However, most previous studies only focus on energy analysis. In this paper, an experiment was conducted and the effect of refrigerant charge was evaluated with energy, exergy, economic and environmental analyses. Results showed that the optimal normalized refrigerant charge was 0.214 in the comprehensive analysis. In the most important energy analysis, the peak coefficient of performance was increased by up to 16.27% with optimal charge over other charge amounts, corresponding to the maximum heating capacity and superheat of 5.13 degrees C. The maximum exergy efficiency was 34.17%, and the largest exergy destruction was observed in the evaporator, accounting for 44.04-49.22% of the total. Compared with the direct electric heater, the annual operating cost was decreased by 184.13 thousand Chinese yuan at the optimum charge. Moreover, the payback period was lower than 1.0 years and most sensitive to operating time as shown by the sensitivity analysis. The reduction of carbon dioxide emissions reached the peak value of 378.01 tons at the optimal charge, which was profitable in reducing the greenhouse effect. Also, considering the various operating conditions and domestic hot water load, the energy, economic as well as environmental benefits and the applicability of the evaluated optimal charge were presented.
机译:目前,空气源型转速二氧化碳热泵广泛用于水加热。制冷剂电荷在优化系统性能方面发挥着重要作用。然而,最先前的研究只关注能量分析。在本文中,进行了实验,并通过能量,出境,经济和环境分析评估了制冷剂电荷的效果。结果表明,综合分析中最佳标准化制冷剂电荷为0.214。在最重要的能量分析中,峰值性能系数高达16.27%,最佳电荷量与其他电荷量相对应,对应于5.13摄氏度的最大加热容量和过热。最大的高度效率为34.17%,而且在蒸发器中观察到最大的漏洞破坏,占总数的44.04-49.22%。与直接电加热器相比,每年运营成本下降184.13万元以上的收费。此外,回收期低于1.0岁,对操作时间最敏感,如灵敏度分析所示。二氧化碳排放的减少达到最佳充电的峰值378.01吨,这在降低温室效应方面是有利可图的。此外,考虑到各种操作条件和国内热水负荷,介绍了能源,经济以及环境效益以及评估的最佳充电的适用性。

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