Resuspension of deposited nanoparticles during pool boiling

被引:22
作者
Lin, Lingnan [1 ]
Chang, Zheng [1 ]
Ding, Guoliang [1 ]
机构
[1] Shanghai Jiao Tong Univ, Inst Refrigerat & Cryogen, Shanghai, Peoples R China
基金
中国国家自然科学基金;
关键词
Nanoparticle; Deposition; Pool boiling; Resuspension; Nanofluids; Stability; HEAT-TRANSFER; REFRIGERATION SYSTEM; NANOFLUIDS; SURFACE; NANOREFRIGERANTS; AGGREGATION; PERFORMANCE; SIMULATION;
D O I
10.1016/j.ijheatmasstransfer.2018.10.092
中图分类号
O414.1 [热力学];
学科分类号
摘要
The resuspension of deposited nanoparticles within a boiling fluid is a nanoparticle behavior that may mitigate or even avoid the degradation of nanofluids, which is of great significance to the long-lasting heat transfer enhancement of nanofluids. In this study, the nanoparticle resuspension behavior during pool boiling was investigated experimentally and theoretically. Visualized pool boiling experiments were conducted for the nanoparticle-deposited surfaces which were prepared by boiling nanofluids. Various methods were employed to capture the resuspension phenomenon and characterize the morphology of nanoparticle deposition layer. The nanoparticle resuspension ratio was measured for various boiling durations, deposition area densities, and heat fluxes to elucidate the effects of these factors on the resuspension behavior. It was found that a part of deposited nanoparticles were resuspended to the bulk of the boiling liquid and then migrated with the internal flow during pool boiling, and the porous structure of nanoparticle deposition layer played a key role in the occurrence of resuspension. The measurement showed that heat flux was a main influential factor, and increasing heat flux can lead to a dramatical increase of resuspension ratio. A semi-theoretical model was developed to predict the resuspension ratio, which agreed well with the experimental results. (C) 2018 Elsevier Ltd. All rights reserved.
引用
收藏
页码:230 / 239
页数:10
相关论文
共 50 条
[21]   Pool boiling heat transfer characteristics of refrigerant-nanoparticle mixtures [J].
Naphon, Paisarn ;
Thongjing, Chatchawan .
INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2014, 52 :84-89
[22]   Study of pool boiling heat transfer of nanofluid in the PCD electrical fields [J].
Chen, Yanjun ;
Fu, Shijin ;
Guo, Jun ;
Liu, Xiuliang ;
He, Deqiang .
INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2022, 137
[23]   The effect of metal foam fins on pool boiling of DI-water [J].
Vilaronga, Arthur Gomes da Silva ;
Manetti, Leonardo Lachi ;
Gajghate, Sameer Sheshrao ;
de Oliveira, Jeferson Diehl ;
Cardoso, Elaine Maria .
EXPERIMENTAL THERMAL AND FLUID SCIENCE, 2024, 154
[24]   Pool Boiling Heat Transfer Characteristics of New and Recycled Alumina Nanofluids [J].
Ajeeb, Wagd ;
Murshed, S. M. Sohel .
NANOMATERIALS, 2023, 13 (06)
[25]   Pool boiling characteristics of low concentration nanofluids [J].
Kwark, Sang M. ;
Kumar, Ratan ;
Moreno, Gilberto ;
Yoo, Jaisuk ;
You, Seung M. .
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2010, 53 (5-6) :972-981
[26]   Pool boiling heat transfer on the microheater surface with and without nanoparticles by pulse heating [J].
Xu, Li ;
Xu, Jinliang ;
Wang, Bin ;
Zhang, Wei .
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2011, 54 (15-16) :3309-3322
[27]   On the mechanisms leading to ordered nanoparticles deposition during single bubble nucleate pool boiling regime [J].
Kangude, Prasad ;
Srivastava, Atul .
PHYSICS OF FLUIDS, 2021, 33 (11)
[28]   Experimental analysis of magnetic field effect on the pool boiling heat transfer of a ferrofluid [J].
Abdollahi, Ali ;
Salimpour, Mohammad Reza ;
Etesami, Nasrin .
APPLIED THERMAL ENGINEERING, 2017, 111 :1101-1110
[29]   An experimental study of the nanofluid pool boiling on the aluminium surface [J].
Nazari, Ahmad ;
Saedodin, Seyfolah .
JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2019, 135 (03) :1753-1762
[30]   POOL BOILING HEAT TRANSFER ENHANCEMENT OF WATER BY GOLD NANOPARTICLES WITH AN ELECTROPHORETIC DEPOSITION METHOD [J].
Cao, Zhen ;
Anh Duc Pham ;
Wu, Zan ;
Ruzgas, Tautgirdas ;
Alber, Cathrine ;
Sunden, Bengt .
PROCEEDINGS OF THE ASME INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION, 2018, VOL 8B, 2019,