Mechanism of Nano-fluorocarbon Coating Restraining Ice Blocking in Supercooled Heat Exchanger

Ice slurry has been widely used in many fields because of its thermal properties, and ice-making technology has become a focus of study. Dynamic ice-making with supercooled water is one of the most promising method in making ice slurries, but the major defect of this method is that the ice blocking...

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Main Authors: Wang Hong, He Guogeng, Tian Qiqi, Yang Liyuan
Format: Article
Language:zho
Published: Journal of Refrigeration Magazines Agency Co., Ltd. 2012-01-01
Series:Zhileng xuebao
Subjects:
Online Access:http://www.zhilengxuebao.com/thesisDetails#10.3969/j.issn.0253-4339.2012.01.010
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author Wang Hong
He Guogeng
Tian Qiqi
Yang Liyuan
author_facet Wang Hong
He Guogeng
Tian Qiqi
Yang Liyuan
author_sort Wang Hong
collection DOAJ
description Ice slurry has been widely used in many fields because of its thermal properties, and ice-making technology has become a focus of study. Dynamic ice-making with supercooled water is one of the most promising method in making ice slurries, but the major defect of this method is that the ice blocking easily take place in the supercooled heat exchanger. Based on the theory of water crystallization and the analysis of the influence factors of ice blocking, a nano-fluorocarbon coating was used to improve the surface conditions of the supercooled heat exchanger and to restrain water from freezing. It is concluded that the nano-fluorocarbon coating will effectively restrain crystallization on the wall and improve the efficiency of the ice-making unit, which results in the decrease of ice blocking and the energy consumption. The investigation will benefit in developing and improving anti-icing techniques.
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spelling doaj.art-c4f5c9af183d4287b41037e926d91e662025-03-04T09:30:18ZzhoJournal of Refrigeration Magazines Agency Co., Ltd.Zhileng xuebao0253-43392012-01-0166519275Mechanism of Nano-fluorocarbon Coating Restraining Ice Blocking in Supercooled Heat ExchangerWang HongHe GuogengTian QiqiYang LiyuanIce slurry has been widely used in many fields because of its thermal properties, and ice-making technology has become a focus of study. Dynamic ice-making with supercooled water is one of the most promising method in making ice slurries, but the major defect of this method is that the ice blocking easily take place in the supercooled heat exchanger. Based on the theory of water crystallization and the analysis of the influence factors of ice blocking, a nano-fluorocarbon coating was used to improve the surface conditions of the supercooled heat exchanger and to restrain water from freezing. It is concluded that the nano-fluorocarbon coating will effectively restrain crystallization on the wall and improve the efficiency of the ice-making unit, which results in the decrease of ice blocking and the energy consumption. The investigation will benefit in developing and improving anti-icing techniques.http://www.zhilengxuebao.com/thesisDetails#10.3969/j.issn.0253-4339.2012.01.010engineering thermophysicsIce blockingCrystallizationNano-fluorocarbon coatingSuper-hydrophobic surfacecontact angle
spellingShingle Wang Hong
He Guogeng
Tian Qiqi
Yang Liyuan
Mechanism of Nano-fluorocarbon Coating Restraining Ice Blocking in Supercooled Heat Exchanger
Zhileng xuebao
engineering thermophysics
Ice blocking
Crystallization
Nano-fluorocarbon coating
Super-hydrophobic surface
contact angle
title Mechanism of Nano-fluorocarbon Coating Restraining Ice Blocking in Supercooled Heat Exchanger
title_full Mechanism of Nano-fluorocarbon Coating Restraining Ice Blocking in Supercooled Heat Exchanger
title_fullStr Mechanism of Nano-fluorocarbon Coating Restraining Ice Blocking in Supercooled Heat Exchanger
title_full_unstemmed Mechanism of Nano-fluorocarbon Coating Restraining Ice Blocking in Supercooled Heat Exchanger
title_short Mechanism of Nano-fluorocarbon Coating Restraining Ice Blocking in Supercooled Heat Exchanger
title_sort mechanism of nano fluorocarbon coating restraining ice blocking in supercooled heat exchanger
topic engineering thermophysics
Ice blocking
Crystallization
Nano-fluorocarbon coating
Super-hydrophobic surface
contact angle
url http://www.zhilengxuebao.com/thesisDetails#10.3969/j.issn.0253-4339.2012.01.010
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