nfluence of thermal radiation on non-Darcian natural convection in a square cavity filled with fluid saturated porous medium of uniform porosity

Influence of thermal radiation on natural-convection flow in a square cavity filled with a porous medium of uniform porosity having isothermal vertical walls and adiabatic horizontal walls, has been studied numerically by using finite-difference method with staggered grid distribution. The simulati...

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Main Authors: Tapas Ray Mahapatra, Dulal Pal, Sabyasachi Mondal
Format: Article
Language:English
Published: Vilnius University Press 2012-04-01
Series:Nonlinear Analysis
Subjects:
Online Access:http://www.journals.vu.lt/nonlinear-analysis/article/view/14070
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spelling doaj-a38cf3871a5745d099b0b59317f08d2b2020-11-25T01:54:08ZengVilnius University PressNonlinear Analysis1392-51132335-89632012-04-01172nfluence of thermal radiation on non-Darcian natural convection in a square cavity filled with fluid saturated porous medium of uniform porosityTapas Ray Mahapatra0Dulal Pal1Sabyasachi Mondal2Visva-Bharati (A Central University), IndiaVisva-Bharati (A Central University), IndiaBengal Institute of Technology and Management, India Influence of thermal radiation on natural-convection flow in a square cavity filled with a porous medium of uniform porosity having isothermal vertical walls and adiabatic horizontal walls, has been studied numerically by using finite-difference method with staggered grid distribution. The simulation is performed by considering both Darcian and non-Darcian models. Governing momentum and energy equations are solved numerically to obtain velocity and temperature fields for various values of different physical parameters. It is seen that increasing the thermal radiation parameter enhances the local Nusselt number on the left vertical wall whereas the reverse effects are observed due to increase in the heat generating parameter when Ra = 109. The temperature at the mid-horizontal plane decreases with increase in the value of Rayleigh number up to a certain distance from the left vertical wall and beyond that distance the opposite trend is observed. The temperature at the mid-horizontal plane increases with increase in the value of heat generating parameter. http://www.journals.vu.lt/nonlinear-analysis/article/view/14070natural convectionsquare cavityDarcy–Forchheimer modelthermal radiationheat generation
collection DOAJ
language English
format Article
sources DOAJ
author Tapas Ray Mahapatra
Dulal Pal
Sabyasachi Mondal
spellingShingle Tapas Ray Mahapatra
Dulal Pal
Sabyasachi Mondal
nfluence of thermal radiation on non-Darcian natural convection in a square cavity filled with fluid saturated porous medium of uniform porosity
Nonlinear Analysis
natural convection
square cavity
Darcy–Forchheimer model
thermal radiation
heat generation
author_facet Tapas Ray Mahapatra
Dulal Pal
Sabyasachi Mondal
author_sort Tapas Ray Mahapatra
title nfluence of thermal radiation on non-Darcian natural convection in a square cavity filled with fluid saturated porous medium of uniform porosity
title_short nfluence of thermal radiation on non-Darcian natural convection in a square cavity filled with fluid saturated porous medium of uniform porosity
title_full nfluence of thermal radiation on non-Darcian natural convection in a square cavity filled with fluid saturated porous medium of uniform porosity
title_fullStr nfluence of thermal radiation on non-Darcian natural convection in a square cavity filled with fluid saturated porous medium of uniform porosity
title_full_unstemmed nfluence of thermal radiation on non-Darcian natural convection in a square cavity filled with fluid saturated porous medium of uniform porosity
title_sort nfluence of thermal radiation on non-darcian natural convection in a square cavity filled with fluid saturated porous medium of uniform porosity
publisher Vilnius University Press
series Nonlinear Analysis
issn 1392-5113
2335-8963
publishDate 2012-04-01
description Influence of thermal radiation on natural-convection flow in a square cavity filled with a porous medium of uniform porosity having isothermal vertical walls and adiabatic horizontal walls, has been studied numerically by using finite-difference method with staggered grid distribution. The simulation is performed by considering both Darcian and non-Darcian models. Governing momentum and energy equations are solved numerically to obtain velocity and temperature fields for various values of different physical parameters. It is seen that increasing the thermal radiation parameter enhances the local Nusselt number on the left vertical wall whereas the reverse effects are observed due to increase in the heat generating parameter when Ra = 109. The temperature at the mid-horizontal plane decreases with increase in the value of Rayleigh number up to a certain distance from the left vertical wall and beyond that distance the opposite trend is observed. The temperature at the mid-horizontal plane increases with increase in the value of heat generating parameter.
topic natural convection
square cavity
Darcy–Forchheimer model
thermal radiation
heat generation
url http://www.journals.vu.lt/nonlinear-analysis/article/view/14070
work_keys_str_mv AT tapasraymahapatra nfluenceofthermalradiationonnondarciannaturalconvectioninasquarecavityfilledwithfluidsaturatedporousmediumofuniformporosity
AT dulalpal nfluenceofthermalradiationonnondarciannaturalconvectioninasquarecavityfilledwithfluidsaturatedporousmediumofuniformporosity
AT sabyasachimondal nfluenceofthermalradiationonnondarciannaturalconvectioninasquarecavityfilledwithfluidsaturatedporousmediumofuniformporosity
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