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Performance evaluation of a novel frost-free air-source heat pump integrated with phase change materials (PCMs) and dehumidification

机译:具有相变材料(PCM)和除湿的新型冻融空气源热泵的性能评价

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Air-source heat pump (ASHP) has been widely used in domestic and commercial buildings because of its energy savings, high efficiency and environmental friendliness. However, the heating capacity of an ASHP system is greatly influenced by the frost accumulation on the surface of the outdoor exchanger. To solve this problem, a novel frost-free ASHP system, integrating with Phase Change Materials (PCMs) and dehumidification, has been developed. In this paper, the schematic design of this system is first presented. The effect of the match relationship between the desiccant materials and PCM thermal energy storage on the performance of the novel system is then studied using a dynamic mathematical model. The simulation results showed that the dehumidification efficiency was increased from 31.8% to 34.7% with the increase of the solid desiccant mass from 1.9kg to 3.5 kg when the volume of the PCM was 1000 ml. The system COP was 2.87 when the desiccant was 2.2 kg and the volume of PCM was 1100 ml at a relative humidity of 80% and ambient temperature of 0°C.In addition, the water temperature was heated to55°C in one cycle which decreased the irreversible loss. Lastly, a correlation of the system COP with the amount of the solid desiccant and the PCM was obtained through a multivariate linear regression. The results obtained can facilitate optimal design and dynamic behavior investigation of this system.
机译:由于其节能,高效率和环境友好,空气源热泵(ASHP)已广泛应用于国内和商业建筑。然而,ASHP系统的加热能力受到室外交换器表面上的霜冻积聚的大大影响。为了解决这个问题,已经开发出一种新的无冰霜ASHP系统,与相变材料(PCM)和除湿性相结合。本文首先呈现该系统的示意性设计。然后使用动态数学模型研究干燥剂材料和PCM热能存储器对新系统性能的匹配关系。模拟结果表明,当PCM的体积为1000ml时,将除湿效率从1.9kg增加到3.5kg的固体干燥剂质量增加到31.8%至34.7%。当干燥剂为2.87时,当干燥剂为2.2千克并且PCM的体积在80%和环境温度为0°C的相对湿度下为1100ml。此外,在一个循环中加热水温至55°C,减少不可逆转的损失。最后,通过多变量线性回归获得系统COP与固体干燥剂和PCM的量的相关性。获得的结果可以促进该系统的最佳设计和动态行为调查。

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