Title of article
Numerical investigation of effective parameters in convective heat transfer of nanofluids flowing under a laminar flow regime
Author/Authors
Ehsan Ebrahimnia-Bajestan، نويسنده , , Hamid Niazmand، نويسنده , , Weerapun Duangthongsuk، نويسنده , , Somchai Wongwises، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2011
Pages
13
From page
4376
To page
4388
Abstract
This article presents a numerical investigation on heat transfer performance and pressure drop of nanofluids flows through a straight circular pipe in a laminar flow regime and constant heat flux boundary condition. Al2O3, CuO, carbon nanotube (CNT) and titanate nanotube (TNT) nanoparticles dispersed in water and ethylene glycol/water with particle concentrations ranging between 0 and 6 vol.% were used as working fluids for simulating the heat transfer and flow behaviours of nanofluids. The proposed model has been validated with the available experimental data and correlations. The effects of particle concentrations, particle diameter, particles Brownian motions, Reynolds number, type of the nanoparticles and base fluid on the heat transfer coefficient and pressure drop of nanofluids were determined and discussed in details. The results indicated that the particle volume concentration, Brownian motion and aspect ratio of nanoparticles similar to flow Reynolds number increase the heat transfer coefficient, while the nanoparticle diameter has an opposite effect on the heat transfer coefficient. Finally, the present study provides some considerations for the appropriate choice of the nanofluids for practical applications.
Keywords
Heat transfer performance , Numerical study , Thermal conductivity , Pressure drop , Nanofluids
Journal title
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER
Serial Year
2011
Journal title
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER
Record number
1077459
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