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AuthorYao, Lin
AuthorSun, Yuying
AuthorLuo, Jianfei
AuthorWei, Wenzhe
AuthorWang, Wei
AuthorLuo, Qing
AuthorLiu, Shengnan
AuthorDeng, Shiming
Available date2025-07-01T07:41:34Z
Publication Date2023-04-01
Publication NameEnergy and Buildings
Identifierhttp://dx.doi.org/10.1016/j.enbuild.2023.112814
CitationLin, Y., Sun, Y., Luo, J., Wei, W., Wang, W., Luo, Q., ... & Deng, S. (2023). A novel coefficient of frosting suppression based on the real-time operating characteristics of air source heat pumps. Energy and Buildings, 284, 112814.
ISSN03787788
URIhttps://www.sciencedirect.com/science/article/pii/S0378778823000440
URIhttp://hdl.handle.net/10576/65924
AbstractIt has been known that for space heating ASHPs, their different configurations and operation may influence their frosting performances. However, there has been no comprehensive coefficient that can be conveniently and comprehensively used to characterize the frosting status, severeness level of frosting, and the potential for frosting suppression during the real-time operation of an ASHP unit. Therefore, in this paper, a novel coefficient of frosting suppression based on the operating characteristic for ASHPs has been proposed, and its development is reported. Firstly, a novel dimensionless coefficient, COFS, to reflect the severeness of frosting for ASHPs was defined. Secondly, an experimental setup with four variable speed experimental ASHP units and test conditions are described. Thirdly, using the experimental results, COFS-based frosting suppression performance maps for the four units were developed. It is shown that because the experimental four units had different frosting suppression abilities, their frosting areas in their frosting maps were 50%, 100%, 94%, and 58%, respectively. In addition, as the test conditions changed, the frosting area on a map area could also change. These have proved that the proposed COFS could effectively reflect the frosting status and the relative level of frosting suppression performances of ASHP in actual operation.
SponsorThis work was supported partially by the National Key Research and Development Program of China (Grant No. 2022YFE0134000) and National Natural Science Foundation of China (Grant No. 52208093).
Languageen
PublisherElsevier
SubjectAir source heat pump
Coefficient of frosting suppression
Variable speed
Frosting suppression performance map
Frosting area
TitleA novel coefficient of frosting suppression based on the real-time operating characteristics of air source heat pumps
TypeArticle
Volume Number284
ESSN1872-6178
dc.accessType Open Access


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