Effects of Brownian motion on freezing of PCM containing nanoparticles

Enhancement of thermal and heat transfer capabilities of phase change materials with addition of nanoparticles is reported. The mixed nanofluid of phase change material and nanoparticles presents a high thermal conductivity and low heat capacity and latent heat, in comparison with the base...

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Main Authors: Abdollahzadeh Jamalabadi M.Y., Park Jae Hyun
Format: Article
Language:English
Published: VINCA Institute of Nuclear Sciences 2016-01-01
Series:Thermal Science
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0354-9836/2016/0354-98361400094A.pdf
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spelling doaj-8ffc616aa7ba46689efaae56e846e11d2021-01-02T01:24:50ZengVINCA Institute of Nuclear SciencesThermal Science0354-98362334-71632016-01-012051533154110.2298/TSCI140413094A0354-98361400094AEffects of Brownian motion on freezing of PCM containing nanoparticlesAbdollahzadeh Jamalabadi M.Y.0Park Jae Hyun1Maritime University of Chabahar, Chabahar, Iran + Graduate School of Mechanical and Aerospace Engineering, Gyeongsang National University, Jinju, Gyeongnam, South KoreaGyeongsang National University, Research Center for Aircraft Parts Technology, Department of Aerospace and System Engineering, Jinju, Gyeongnam, South KoreaEnhancement of thermal and heat transfer capabilities of phase change materials with addition of nanoparticles is reported. The mixed nanofluid of phase change material and nanoparticles presents a high thermal conductivity and low heat capacity and latent heat, in comparison with the base fluid. In order to present the thermophysical effects of nanoparticles, a solidification of nanofluid in a rectangular enclosure with natural convection induced by different wall temperatures is considered. The results show that the balance between the solidification acceleration by nanoparticles and slowing-down by phase change material gives rise to control the medium temperature. It indicates that this kind of mixture has great potential in various applications which requires temperature regulation. Also, the Brownian motion of nanoparticles enhances the convective heat transfer much more than the conductive transfer.http://www.doiserbia.nb.rs/img/doi/0354-9836/2016/0354-98361400094A.pdfnanoparticlesnanofluidsphase changetemperature controlnatural convectionsolidificationBrownian motion
collection DOAJ
language English
format Article
sources DOAJ
author Abdollahzadeh Jamalabadi M.Y.
Park Jae Hyun
spellingShingle Abdollahzadeh Jamalabadi M.Y.
Park Jae Hyun
Effects of Brownian motion on freezing of PCM containing nanoparticles
Thermal Science
nanoparticles
nanofluids
phase change
temperature control
natural convection
solidification
Brownian motion
author_facet Abdollahzadeh Jamalabadi M.Y.
Park Jae Hyun
author_sort Abdollahzadeh Jamalabadi M.Y.
title Effects of Brownian motion on freezing of PCM containing nanoparticles
title_short Effects of Brownian motion on freezing of PCM containing nanoparticles
title_full Effects of Brownian motion on freezing of PCM containing nanoparticles
title_fullStr Effects of Brownian motion on freezing of PCM containing nanoparticles
title_full_unstemmed Effects of Brownian motion on freezing of PCM containing nanoparticles
title_sort effects of brownian motion on freezing of pcm containing nanoparticles
publisher VINCA Institute of Nuclear Sciences
series Thermal Science
issn 0354-9836
2334-7163
publishDate 2016-01-01
description Enhancement of thermal and heat transfer capabilities of phase change materials with addition of nanoparticles is reported. The mixed nanofluid of phase change material and nanoparticles presents a high thermal conductivity and low heat capacity and latent heat, in comparison with the base fluid. In order to present the thermophysical effects of nanoparticles, a solidification of nanofluid in a rectangular enclosure with natural convection induced by different wall temperatures is considered. The results show that the balance between the solidification acceleration by nanoparticles and slowing-down by phase change material gives rise to control the medium temperature. It indicates that this kind of mixture has great potential in various applications which requires temperature regulation. Also, the Brownian motion of nanoparticles enhances the convective heat transfer much more than the conductive transfer.
topic nanoparticles
nanofluids
phase change
temperature control
natural convection
solidification
Brownian motion
url http://www.doiserbia.nb.rs/img/doi/0354-9836/2016/0354-98361400094A.pdf
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