A general model for the icing characteristics of water droplets on cold surfaces

Yubo Gao, Xuan Zhang, Xin Liu, Mengjie Song, Long Zhang, Xiaoliang Liu, Kailiang Li, Jingchun Min

科研成果: 书/报告/会议事项章节章节同行评审

摘要

Icing is widespread in transportation, aerospace, power, and other fields and often causes hazards and losses. Considering the effect of gravity, a theoretical model of the icing processes of sessile water droplets on the plate surface and spherical surface, as well as the icing process of pendant droplets on the plate surface, is established. Based on the model, the icing characteristics are studied under different droplet volumes, contact angles, and surface temperatures. The results indicate that the shape of the droplet is less affected by the icing rate and less dependent on the subcooling degree. With the decrease of surface temperature and droplet volume and the increase of contact angle, the icing rate increases, and the icing time shortens. Under the same conditions, the pendant droplet has a higher profile and longer icing time. The larger the spherical radius, the larger the base area, and the shorter the icing time. This phenomenon is more pronounced in small spherical radii. This study not only helps us better understand the mechanism and characteristics of icing and frosting but also provides scientific basis and technical support for preventing and controlling icing and frosting.

源语言英语
主期刊名Frosting and Icing for Efficient Energy Use in Engineering Applications
出版商Elsevier
9-37
页数29
ISBN(电子版)9780443154959
ISBN(印刷版)9780443154966
DOI
出版状态已出版 - 1 1月 2025
已对外发布

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