Title of article
MHD Natural Convection in a Square Enclosure using Nanofluid with the Influence of Thermal Boundary Conditions
Author/Authors
Mansour M. A. نويسنده Department of Mathematics - Faculty of Science - Assuit University, Assuit , Ahmed S. E. نويسنده Department of Mathematics - Faculty of Science - South Valley University, Qena , Rashad A. M. نويسنده Department of Mathematics - Faculty of Science - Aswan University, Aswan
Pages
11
From page
2515
To page
2525
Abstract
Numerical investigation for heat transfer with steady MHD natural convection cooling of a localized heat
source at the bottom wall of an enclosure filled with nanofluids subjected to changeable thermal boundary
conditions at the sidewalls has been studied in the a presence of inclined magnetic field. Finite difference
method was employed to solve the dimensionless governing equations of the problem. The effects of
governing parameters, namely, Hartmann number, solid volume fraction, the different values of the heat
source length and the different locations of the heat source on the streamlines and isotherms contours as well
as maximum temperature, Nusselt number and average Nusselt number along the heat source were
considered. The present results are validated by favorable comparisons with previously published results. The
results of the problem are presented in graphical and tabular forms and discussed. It is found that an increase
in the Hartmann number results in a clear reduction in the rate of heat transfer; however, the increase in
Rayleigh number enhances the nanofluid flow and heat transfer rate.
Journal title
Astroparticle Physics
Serial Year
2016
Record number
2414110
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