MHD natural convection in an inclined cavity filled with a fluid saturated porous medium with heat source in the solid phase

A numerical investigation of unsteady magnetohydrodynamic free convection in an inclined square cavity filled with a fluid-saturated porous medium and with internal heat generation has been performed. A uniform magnetic field inclined with the same angle of the inclination of the cavity is applied....

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Main Authors: M. A. Mansour, A. J. Chamkha, R. A. Mohamed, M. M. Abd El-Aziz, S. E. Ahmed
Format: Article
Language:English
Published: Vilnius University Press 2010-01-01
Series:Nonlinear Analysis
Subjects:
MHD
Online Access:http://www.journals.vu.lt/nonlinear-analysis/article/view/14364
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spelling doaj-98bea812e70445e198426a2791b90ca52020-11-25T00:44:54ZengVilnius University PressNonlinear Analysis1392-51132335-89632010-01-0115110.15388/NA.2010.15.1.14364MHD natural convection in an inclined cavity filled with a fluid saturated porous medium with heat source in the solid phaseM. A. Mansour0A. J. Chamkha1R. A. Mohamed2M. M. Abd El-Aziz3S. E. Ahmed4Assuit University, EgyptThe Public Authority for Applied Education and Training, KuwaitSouth Valley University, EgyptSouth Valley University, EgyptSouth Valley University, Egypt A numerical investigation of unsteady magnetohydrodynamic free convection in an inclined square cavity filled with a fluid-saturated porous medium and with internal heat generation has been performed. A uniform magnetic field inclined with the same angle of the inclination of the cavity is applied. The governing equations are formulated and solved by a direct explicit finite-difference method subject to appropriate initial and boundary conditions. Two cases were considered, the first case when all the cavity walls are cooled and the second case when the cavity vertical walls are kept adiabatic. A parametric study illustrating the influence of the Hartmann number, Rayliegh number, the inclination angle of the cavity and the dimensionless time parameter on the flow and heat transfer characteristics such as the streamlines, isotherms and the average Nusselt number is performed. The velocity components at mid section of the cavity as well as the temperature profiles are reported graphically. The values of average Nusselt number for various parametric conditions are presented in tabular form. http://www.journals.vu.lt/nonlinear-analysis/article/view/14364natural convectioninclined cavityporous mediumMHDheat generation
collection DOAJ
language English
format Article
sources DOAJ
author M. A. Mansour
A. J. Chamkha
R. A. Mohamed
M. M. Abd El-Aziz
S. E. Ahmed
spellingShingle M. A. Mansour
A. J. Chamkha
R. A. Mohamed
M. M. Abd El-Aziz
S. E. Ahmed
MHD natural convection in an inclined cavity filled with a fluid saturated porous medium with heat source in the solid phase
Nonlinear Analysis
natural convection
inclined cavity
porous medium
MHD
heat generation
author_facet M. A. Mansour
A. J. Chamkha
R. A. Mohamed
M. M. Abd El-Aziz
S. E. Ahmed
author_sort M. A. Mansour
title MHD natural convection in an inclined cavity filled with a fluid saturated porous medium with heat source in the solid phase
title_short MHD natural convection in an inclined cavity filled with a fluid saturated porous medium with heat source in the solid phase
title_full MHD natural convection in an inclined cavity filled with a fluid saturated porous medium with heat source in the solid phase
title_fullStr MHD natural convection in an inclined cavity filled with a fluid saturated porous medium with heat source in the solid phase
title_full_unstemmed MHD natural convection in an inclined cavity filled with a fluid saturated porous medium with heat source in the solid phase
title_sort mhd natural convection in an inclined cavity filled with a fluid saturated porous medium with heat source in the solid phase
publisher Vilnius University Press
series Nonlinear Analysis
issn 1392-5113
2335-8963
publishDate 2010-01-01
description A numerical investigation of unsteady magnetohydrodynamic free convection in an inclined square cavity filled with a fluid-saturated porous medium and with internal heat generation has been performed. A uniform magnetic field inclined with the same angle of the inclination of the cavity is applied. The governing equations are formulated and solved by a direct explicit finite-difference method subject to appropriate initial and boundary conditions. Two cases were considered, the first case when all the cavity walls are cooled and the second case when the cavity vertical walls are kept adiabatic. A parametric study illustrating the influence of the Hartmann number, Rayliegh number, the inclination angle of the cavity and the dimensionless time parameter on the flow and heat transfer characteristics such as the streamlines, isotherms and the average Nusselt number is performed. The velocity components at mid section of the cavity as well as the temperature profiles are reported graphically. The values of average Nusselt number for various parametric conditions are presented in tabular form.
topic natural convection
inclined cavity
porous medium
MHD
heat generation
url http://www.journals.vu.lt/nonlinear-analysis/article/view/14364
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