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Energy and Economic Performance of Solar Cooling Systems in the Hot-Summer and Cold-Winter Zone

机译:夏热冬冷地区太阳能冷却系统的能源和经济绩效

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Building energy consumption has distinctly increased in the hot-summer and cold-winter zone in China. Solar cooling technology has been developed to reduce the increasing electricity consumption for air conditioning and to shift the peak load during hot summer days. This paper presents a performance simulation and economic analysis for both photovoltaic (PV) and thermal solar cooling systems compared to a reference system, which is composed of two electric heat pumps. The results show that 30.7% and 30.2% of primary energy can be saved by using the PV and the thermal system, respectively. The payback time is 6–7 years for the PV system, but more than 20 years for the thermal system based on current conditions in China. Therefore, the PV system is more suitable for practical application in the hot-summer and cold-winter zone. The thermal system could be an alternative when middle- and high-temperature solar thermal collector technology has been further developed, as well as following mass production of small- and middle-sized chillers.
机译:在中国炎热和寒冷的冬天,建筑能耗明显增加。已经开发出太阳能冷却技术,以减少增加的空调用电量并转移炎热夏季的高峰负荷。与由两个电热泵组成的参考系统相比,本文介绍了光伏(PV)和太阳热能冷却系统的性能仿真和经济分析。结果表明,使用光伏系统和热力系统分别可以节省30.7%和30.2%的一次能源。根据中国的当前情况,光伏系统的投资回收期为6–7年,而热力系统的投资回收期为20年以上。因此,该光伏系统更适合在炎热的夏季和寒冷的冬季地区实际应用。当中高温太阳能集热器技术得到进一步发展以及中小型冷水机的批量生产之后,该热系统可以作为替代方案。

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