Single Walled Carbon Nanotube Effects on Mixed Convection heat Transfer in an Enclosure: a LBM Approach

The effects of Single Walled Carbon Nanotube (SWCNT) on mixed convection in a cavity are investigated numerically. The problem is studied for different Richardson numbers (0.1-10), volume fractions of nanotubes (0-1%), and aspect ratio of the cavity (0.5-2.5) when the Grashof number is equal to 103....

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Main Authors: M. Jafari, M. Farhadi, K. Sedighi
Format: Article
Language:English
Published: University of Sistan and Baluchestan (USB) and the Iranian Society of Mechanical Engineers (ISME) 2014-01-01
Series:Transport Phenomena in Nano and Micro Scales
Subjects:
Online Access:http://tpnms.usb.ac.ir/article_1410_baa90fb224b1acce6c16608cf04bcc9a.pdf
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spelling doaj-f8197647b8a84dcfb5cdf9ef9c96bd172021-01-02T01:05:26ZengUniversity of Sistan and Baluchestan (USB) and the Iranian Society of Mechanical Engineers (ISME)Transport Phenomena in Nano and Micro Scales2322-36342322-36342014-01-0121142810.7508/tpnms.2014.01.0021410Single Walled Carbon Nanotube Effects on Mixed Convection heat Transfer in an Enclosure: a LBM ApproachM. Jafari0M. Farhadi1K. Sedighi2Mechanical Engineering Department, University of Technology Babol, Babol, I.R. IranMechanical Engineering Department, University of Technology Babol, Babol, I.R. IranMechanical Engineering Department, University of Technology Babol, Babol, I.R. IranThe effects of Single Walled Carbon Nanotube (SWCNT) on mixed convection in a cavity are investigated numerically. The problem is studied for different Richardson numbers (0.1-10), volume fractions of nanotubes (0-1%), and aspect ratio of the cavity (0.5-2.5) when the Grashof number is equal to 103. The volume fraction of added nanotubes to Water as base fluid are lowers than 1% to make dilute suspensions. The Study presents a numerical treatment based on LBM to model convection heat transfer of Carbon nanotube based nanofluids. A theoretical model is used for effective thermal conductivity of the nanofluid containing Carbon nanotubes. This model covers different phenomena of energy transport in nanofluids. Also, an analytical model is applied for effective viscosity of the nanofluid which includes the Brownian effect and other physical properties of nanofluids. Results show that adding a low value of SWCNT to the base fluid led to significant enhancement of convection heat transfer. Make a comparison between the obtained results and other published papers shows that Carbon nanotubes enhances the rate of convection heat transfer better than other nanoparticles.http://tpnms.usb.ac.ir/article_1410_baa90fb224b1acce6c16608cf04bcc9a.pdfEffective Thermal ConductivityEffective ViscosityLattice Boltzmann methodLid-Driven CavityMixed convectionNusselt NumberRichardson numberSingle Walled Carbon Nanotube (SWCNT)
collection DOAJ
language English
format Article
sources DOAJ
author M. Jafari
M. Farhadi
K. Sedighi
spellingShingle M. Jafari
M. Farhadi
K. Sedighi
Single Walled Carbon Nanotube Effects on Mixed Convection heat Transfer in an Enclosure: a LBM Approach
Transport Phenomena in Nano and Micro Scales
Effective Thermal Conductivity
Effective Viscosity
Lattice Boltzmann method
Lid-Driven Cavity
Mixed convection
Nusselt Number
Richardson number
Single Walled Carbon Nanotube (SWCNT)
author_facet M. Jafari
M. Farhadi
K. Sedighi
author_sort M. Jafari
title Single Walled Carbon Nanotube Effects on Mixed Convection heat Transfer in an Enclosure: a LBM Approach
title_short Single Walled Carbon Nanotube Effects on Mixed Convection heat Transfer in an Enclosure: a LBM Approach
title_full Single Walled Carbon Nanotube Effects on Mixed Convection heat Transfer in an Enclosure: a LBM Approach
title_fullStr Single Walled Carbon Nanotube Effects on Mixed Convection heat Transfer in an Enclosure: a LBM Approach
title_full_unstemmed Single Walled Carbon Nanotube Effects on Mixed Convection heat Transfer in an Enclosure: a LBM Approach
title_sort single walled carbon nanotube effects on mixed convection heat transfer in an enclosure: a lbm approach
publisher University of Sistan and Baluchestan (USB) and the Iranian Society of Mechanical Engineers (ISME)
series Transport Phenomena in Nano and Micro Scales
issn 2322-3634
2322-3634
publishDate 2014-01-01
description The effects of Single Walled Carbon Nanotube (SWCNT) on mixed convection in a cavity are investigated numerically. The problem is studied for different Richardson numbers (0.1-10), volume fractions of nanotubes (0-1%), and aspect ratio of the cavity (0.5-2.5) when the Grashof number is equal to 103. The volume fraction of added nanotubes to Water as base fluid are lowers than 1% to make dilute suspensions. The Study presents a numerical treatment based on LBM to model convection heat transfer of Carbon nanotube based nanofluids. A theoretical model is used for effective thermal conductivity of the nanofluid containing Carbon nanotubes. This model covers different phenomena of energy transport in nanofluids. Also, an analytical model is applied for effective viscosity of the nanofluid which includes the Brownian effect and other physical properties of nanofluids. Results show that adding a low value of SWCNT to the base fluid led to significant enhancement of convection heat transfer. Make a comparison between the obtained results and other published papers shows that Carbon nanotubes enhances the rate of convection heat transfer better than other nanoparticles.
topic Effective Thermal Conductivity
Effective Viscosity
Lattice Boltzmann method
Lid-Driven Cavity
Mixed convection
Nusselt Number
Richardson number
Single Walled Carbon Nanotube (SWCNT)
url http://tpnms.usb.ac.ir/article_1410_baa90fb224b1acce6c16608cf04bcc9a.pdf
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