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Experimental analysis on a novel frost-free air-source heat pump water heater system

机译:一种新型无霜空气源热泵热水器系统的实验分析

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摘要

Air-source heat pumps (ASHPs) are being widely used in residential and commercial buildings and have a huge potential market and development foreground for its energy-savings, high efficiency and environmental friendliness. However, at low temperatures, frost can accumulate on the surface of the finned outdoor coil which will decrease the heating capacity and coefficient of performance (COP). This paper proposes a novel frost-free air-source heat pump water heater (ASHPWH) system, which is coupled to an extra heat exchanger coated by a solid desiccant (EHECSD) with an energy storage device (ESD). To test the system performance, experiments are carried out and the results show that the relative humidity (RH) of the air can be reduced to 52% after dehumidification and the outdoor heat exchanger can be kept frost-free for 34 min at a temperature of 0℃ and relative humidity (RH) of 80%. In addition, the average COP of the system is 2.81 in a single period, which is an increase of 7.25% and 46.3% in comparison with hot-gas bypass defrosting (HGBD) and electric resistance heating (ERH) respectively. With this new technology, it has been proven that frost-free ASHPWH be achieved.
机译:空气源热泵(ASHP)被广泛用于住宅和商业建筑,并且由于其节能,高效和环保的特点而具有巨大的潜在市场和发展前景。但是,在低温下,霜可能会积聚在室外翅片盘管的表面,这将降低加热能力和性能系数(COP)。本文提出了一种新颖的无霜空气源热泵热水器(ASHPWH)系统,该系统与带有固体干燥剂(EHECSD)并带有能量存储装置(ESD)的额外热交换器相连。为了测试系统性能,进行了实验,结果表明,除湿后空气的相对湿度(RH)可以降低到52%,并且室外热交换器可以在30°C的温度下保持无霜34分钟。 0℃,相对湿度(RH)为80%。此外,系统的平均COP在单个期间为2.81,与热气旁路除霜(HGBD)和电阻加热(ERH)相比分别增加了7.25%和46.3%。通过这项新技术,已证明可以实现无霜ASHPWH。

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