Experimental Study on Super-cooling Degree of Nanofluids for Cryogenic Cool Storage

Four different concentration TiO2-BaCl2-H2O nanofluids with 20nm TiO2 were prepared by supersonic oscillator through adding hydrophilic dispersant into BaCl2 solution. BaCl2-H2O and TiO2-BaCl2-H2O nanofluids were tested experimentally. The results show that nanofluids have remarkably lower supercool...

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Main Authors: He Qinbo, Tong Mingwei, Liu Yudong
Format: Article
Language:zho
Published: Journal of Refrigeration Magazines Agency Co., Ltd. 2007-01-01
Series:Zhileng xuebao
Online Access:http://www.zhilengxuebao.com/thesisDetails#10.3969/j.issn.0253-4339.2007.04.005
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author He Qinbo
Tong Mingwei
Liu Yudong
author_facet He Qinbo
Tong Mingwei
Liu Yudong
author_sort He Qinbo
collection DOAJ
description Four different concentration TiO2-BaCl2-H2O nanofluids with 20nm TiO2 were prepared by supersonic oscillator through adding hydrophilic dispersant into BaCl2 solution. BaCl2-H2O and TiO2-BaCl2-H2O nanofluids were tested experimentally. The results show that nanofluids have remarkably lower supercooling degree than BaCl2-H2O, and the beginning nucleation time of nanofluids is ahead of BaCl2-H2O. Moreover, their crystallization time is lower than that of BaCl2-H2O. Also, the crystallization mechanism was analyzed for the influence of the nano TiQ2 particles on BaCl2-H2O.
format Article
id doaj-art-6e56173b8aa64b6fa0c2c45f5ccf64b6
institution OA Journals
issn 0253-4339
language zho
publishDate 2007-01-01
publisher Journal of Refrigeration Magazines Agency Co., Ltd.
record_format Article
series Zhileng xuebao
spelling doaj-art-6e56173b8aa64b6fa0c2c45f5ccf64b62025-08-20T02:02:58ZzhoJournal of Refrigeration Magazines Agency Co., Ltd.Zhileng xuebao0253-43392007-01-0166521935Experimental Study on Super-cooling Degree of Nanofluids for Cryogenic Cool StorageHe QinboTong MingweiLiu YudongFour different concentration TiO2-BaCl2-H2O nanofluids with 20nm TiO2 were prepared by supersonic oscillator through adding hydrophilic dispersant into BaCl2 solution. BaCl2-H2O and TiO2-BaCl2-H2O nanofluids were tested experimentally. The results show that nanofluids have remarkably lower supercooling degree than BaCl2-H2O, and the beginning nucleation time of nanofluids is ahead of BaCl2-H2O. Moreover, their crystallization time is lower than that of BaCl2-H2O. Also, the crystallization mechanism was analyzed for the influence of the nano TiQ2 particles on BaCl2-H2O.http://www.zhilengxuebao.com/thesisDetails#10.3969/j.issn.0253-4339.2007.04.005
spellingShingle He Qinbo
Tong Mingwei
Liu Yudong
Experimental Study on Super-cooling Degree of Nanofluids for Cryogenic Cool Storage
Zhileng xuebao
title Experimental Study on Super-cooling Degree of Nanofluids for Cryogenic Cool Storage
title_full Experimental Study on Super-cooling Degree of Nanofluids for Cryogenic Cool Storage
title_fullStr Experimental Study on Super-cooling Degree of Nanofluids for Cryogenic Cool Storage
title_full_unstemmed Experimental Study on Super-cooling Degree of Nanofluids for Cryogenic Cool Storage
title_short Experimental Study on Super-cooling Degree of Nanofluids for Cryogenic Cool Storage
title_sort experimental study on super cooling degree of nanofluids for cryogenic cool storage
url http://www.zhilengxuebao.com/thesisDetails#10.3969/j.issn.0253-4339.2007.04.005
work_keys_str_mv AT heqinbo experimentalstudyonsupercoolingdegreeofnanofluidsforcryogeniccoolstorage
AT tongmingwei experimentalstudyonsupercoolingdegreeofnanofluidsforcryogeniccoolstorage
AT liuyudong experimentalstudyonsupercoolingdegreeofnanofluidsforcryogeniccoolstorage