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Stagnation-point flow past a shrinking sheet in a nanofluid.


Citation

Nazar, Roslinda and Jaradat, Mihaela and Md. Arifin, Norihan and Pop, Ioan (2011) Stagnation-point flow past a shrinking sheet in a nanofluid. Central European Journal of Physics, 9 (5). pp. 1195-1202. ISSN 1895-1082

Abstract

In this paper, the stagnation-point flow and heat transfer towards a shrinking sheet in a nanofluid is considered. The nonlinear system of coupled partial differential equations was transformed and reduced to a nonlinear system of coupled ordinary differential equations, which was solved numerically using the shooting method. Numerical results were obtained for the skin friction coefficient, the local Nusselt number as well as the velocity and temperature profiles for some values of the governing parameters, namely the nanoparticle volume fraction φ, the shrinking parameter λand the Prandtl number Pr. Three different types of nanoparticles are considered, namely Cu, Al2O3 and TiO2. It was found that nanoparticles of low thermal conductivity, TiO2, have better enhancement on heat transfer compared to nanoparticles Al2O3 and Cu. For a particular nanoparticle, increasing the volume fraction φ results in an increase of the skin friction coefficient and the heat transfer rate at the surface. It is also found that solutions do not exist for larger shrinking rates and dual solutions exist when λ < −1.0.


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Additional Metadata

Item Type: Article
Divisions: Faculty of Science
DOI Number: https://doi.org/10.2478/s11534-011-0024-5
Publisher: Springer Verlag
Keywords: Boundary layer, Nanofluid; stagnation-point flow; Shrinking sheet; Dual solutions.
Depositing User: Nur Farahin Ramli
Date Deposited: 05 Aug 2013 06:19
Last Modified: 16 Dec 2015 04:45
Altmetrics: http://www.altmetric.com/details.php?domain=psasir.upm.edu.my&doi=10.2478/s11534-011-0024-5
URI: http://psasir.upm.edu.my/id/eprint/25009
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