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Energy analysis of heat pump water heaters coupled with air-based solar thermal collectors in Canada and the United States

机译:加热器加热器热泵热水器的能量分析加拿大航空太阳能热收集器和美国

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Heat pump water heaters (HPWHs) operate with two to three times the efficiency of electric water heaters, and over three times the efficiency of natural gas water heaters; however, this benefit is accompanied by a secondary space cooling effect that increases space heating costs. To mitigate this, HPWHs may be coupled with solar thermal collectors which preheat inlet air. The objective of this study was to compare the energy performance of HPWHs and solar-assisted HPWHs (SAHPWHs) across Canada and the United States, to determine where the SAHPWH could offset the space heating increase of HPWHs. This was done using an empirical model, with different modelling methods and assumptions that were assessed and compared. It was found that the SAHPWH could fully mitigate the space heating increase throughout winter, while decreasing the space heating load by 1-3%, and during the cooling season, decreasing the space cooling load by 7-15% in all climates studied. This research indicates that HPWHs and SAHPWHs have potential to lead a higher efficiency future, by reducing energy consumption for water heating beyond what is presently achievable with electric and natural gas storage tank water heaters.(c) 2021 Elsevier Ltd. All rights reserved.
机译:热泵热水器(HPWHS)用两到三倍的电热水加热器效率运行,以及天然气热水器效率的三倍;然而,这种好处伴随着增加空间加热成本的二级空间冷却效果。为了缓解这一点,HPWH可以与太阳能热收集器连接,预热入口。本研究的目的是将HPWHS和太阳能辅助HPWHS(SAHPWHS)的能源绩效进行比较,以确定SAHPWH可以抵消HPWH的空间加热增加。这是使用经验模型完成的,具有评估和比较的不同建模方法和假设。结果发现,SAHPWH可以完全缓解整个冬季的空间加热增加,同时将空间加热负荷降低1-3%,在冷却季期间,在研究中的所有气候中降低了空间冷却载荷7-15%。这项研究表明,通过减少电气和天然气储罐热水器目前可实现的水的能量消耗,HPWHS和SAHPWHS可能导致更高的效率未来。(c)2021 elestvier有限公司保留所有权利。

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