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Qualitative Methodology for comparison of Performance of Air Source Heat Pump Water Heaters

机译:用于比较空气源热泵热水器性能的定性方法

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This paper presents a statistical comparison of the electrical energy consumed due to the operation of two residential types of air source heat pump (ASHP) water heaters. The study focused on the determination of the electrical energies consumed and coefficient of performance (COP), by a 1.2 kW split type ASHP without an electric backup and a 0.9 kW integrated type with an auxiliary resistance element of 0.5 kW and both tank size was 150 L. The COPs and the electrical energies consumed were determined from the controlled volume of hot water (150, 50 and 100 L) drawn from each tank at different time of use (morning, afternoon and evening) periods for both the summer and winter seasons. Power meters, flow meters, and temperature sensors were installed on both types of ASHP water heaters to measure the data needed to determine the electrical energies consumed, the COPs and the thermal energies gained. The results depicted that the mean month-day electrical energy consumed by the split and integrated type ASHP water heaters in summer and winter periods was 1.24 and 1.35 kWh, and 1.56 and 1.89 kWh, respectively. Lastly, the p-value from the one-way ANOVA and the Kruskal-Wallis tests for the electrical energies consumed among the four groups was 1.63 x 10-5 and 1.60 x 10-3, respectively. It can be concluded that, despite the favourable seasonal performance of both the split and integrated type ASHP water heaters, there exists a significant difference in the electrical energies consumed at 1% significance level among the four groups.
机译:本文介绍了由于两种住宅类型的空气源热泵(ASHP)热泵(ASHP)热水器的运行而消耗的电能的统计比较。该研究专注于确定消耗的电能和性能系数(COP),通过无电备用的1.2 kW分割型ASHP,0.9 kW集成型,辅助电阻元件为0.5 kW,罐尺寸为150 L. COPS和消耗的电能由来自每个罐中的不同使用时间(早上,下午和晚期)的受控体积从夏季和冬季的不同时间(早上,下午和晚)的温度(150,50和100L)确定。电力计,流量计和温度传感器安装在两种类型的ASHP热水器上,以测量确定消耗的电能,警察和热能所需的数据所需的数据。结果表明,夏季和冬季期间分裂和集成型ASHP热水器消耗的平均电能分别为1.24和1.35千瓦时,分别为1.56和1.89千瓦时。最后,来自单向ANOVA的P值和四组中消耗的电能的Kruskal-Wallis测试为1.63 x 10 -5 和1.60 x 10 -3 , 分别。可以得出结论,尽管分裂和集成型ASHP热水器的季节性表现有利,但四组中的1%显着性降低的电能差异存在显着差异。

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