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AuthorSun, Yuying
AuthorChen, Xu
AuthorWu, Shangjiang
AuthorWei, Wenzhe
AuthorWang, Wei
AuthorDeng, Shiming
Available date2022-08-30T17:00:15Z
Publication Date2022-07-05
Publication NameApplied Thermal Engineering
Identifierhttp://dx.doi.org/10.1016/j.applthermaleng.2022.118401
CitationSun, Y., Chen, X., Wu, S., Wei, W., Wang, W., & Deng, S. (2022). Performance analysis of air source heat pump space heating system with an adaptive control for supply water temperature. Applied Thermal Engineering, 211, 118401.‏
URIhttp://hdl.handle.net/10576/33542
AbstractAir source heat pumps (ASHPs) have been widely used for heating in buildings. While in practice, the setting value of its supply water temperature is always far higher than the theoretical value owing to the delayed regulation, and this results in the low coefficient of performance. To solve this problem, an adaptive control method for the supply water temperature was proposed in present work. This control method could predict the best setting value of supply water temperature based on the heat-balance of the heat exchange amount in indoor fan-coils and building heating load, and the least squares method was used to achieve the adaptive identification of parameters. By adopting this control method in a field ASHP system, four sets of experiments were conducted. Results showed that this control method could quickly and accurately adapt to the actual project, and adjust the water temperature according to heating demand. When employing the new control method, the average supply water temperature was reduced by 8.4 °C, and lower supply water temperature made the coefficient of performance of ASHP unit increased by 21.16%; the building energy consumption was reduced by 34.24%, and the power consumption of the ASHP unit was reduced by 38.20%.
Languageen
PublisherElsevier Ltd
SubjectAir source heat pump
Variable water temperature
Adaptive control method
Building energy saving
TitlePerformance analysis of air source heat pump space heating system with an adaptive control for supply water temperature
TypeArticle
Volume Number211
dc.accessType Abstract Only


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