Non-Darcian effect on double-diffusive natural convection inside aninclined square Dupuit-Darcy porous cavity under a magnetic field

This paper presents a numerical study of a double diffusive convection in an inclined square porous cavity filled with an electrically conducting binary mixture. The upper and bottom walls are maintained at a constant temperatures and concentrations whereas the left and right walls are assumed to be...

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Main Authors: Rebhi Redha, Hadidi Noureddine, Bennacer Rachid
Format: Article
Language:English
Published: VINCA Institute of Nuclear Sciences 2021-01-01
Series:Thermal Science
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0354-9836/2021/0354-98361900271R.pdf
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spelling doaj-6af42ca539594267882f80fc89d6922c2021-02-05T08:41:54ZengVINCA Institute of Nuclear SciencesThermal Science0354-98362334-71632021-01-01251 Part A12113210.2298/TSCI190117271R0354-98361900271RNon-Darcian effect on double-diffusive natural convection inside aninclined square Dupuit-Darcy porous cavity under a magnetic fieldRebhi Redha0Hadidi Noureddine1Bennacer Rachid2University of MEDEA, FT, MEL, Medea, AlgeriaUniversity of MEDEA, FT, MEL, Medea, AlgeriaLMT-ENS Cachan, Cachan Cedex, FranceThis paper presents a numerical study of a double diffusive convection in an inclined square porous cavity filled with an electrically conducting binary mixture. The upper and bottom walls are maintained at a constant temperatures and concentrations whereas the left and right walls are assumed to be adiabatic and impermeable. A uniform and tilted magnetic field is applied at an angle, γ, about the horizontal, it is obvious that this is related to the orientation of the magnetic force that can help or oppose the buoyant force. The Dupuit-Darcy flow model, which includes effects of the inertial parameter, with the Boussinesq approximation, energy, and species transport equations are solved numerically using the classical finite difference method. Governing parameters of the problem under study are the thermal Rayleigh number, Hartmann number, Lewis number, the buoyancy ratio, inclination angle, and tilting angle of the magnetic field. The numerical results are reported on the contours of streamline, temperature, and concentration and for the average Nusselt and Sherwood numbers for various parametric conditions. It is demonstrated that both the inertial effect parameter and the magnetic field, have a strong influence on the strength of the natural convection heat and mass transfer within the porous layer.http://www.doiserbia.nb.rs/img/doi/0354-9836/2021/0354-98361900271R.pdfdouble diffusive convectioninclined porous cavityinertia effectmagnetic field
collection DOAJ
language English
format Article
sources DOAJ
author Rebhi Redha
Hadidi Noureddine
Bennacer Rachid
spellingShingle Rebhi Redha
Hadidi Noureddine
Bennacer Rachid
Non-Darcian effect on double-diffusive natural convection inside aninclined square Dupuit-Darcy porous cavity under a magnetic field
Thermal Science
double diffusive convection
inclined porous cavity
inertia effect
magnetic field
author_facet Rebhi Redha
Hadidi Noureddine
Bennacer Rachid
author_sort Rebhi Redha
title Non-Darcian effect on double-diffusive natural convection inside aninclined square Dupuit-Darcy porous cavity under a magnetic field
title_short Non-Darcian effect on double-diffusive natural convection inside aninclined square Dupuit-Darcy porous cavity under a magnetic field
title_full Non-Darcian effect on double-diffusive natural convection inside aninclined square Dupuit-Darcy porous cavity under a magnetic field
title_fullStr Non-Darcian effect on double-diffusive natural convection inside aninclined square Dupuit-Darcy porous cavity under a magnetic field
title_full_unstemmed Non-Darcian effect on double-diffusive natural convection inside aninclined square Dupuit-Darcy porous cavity under a magnetic field
title_sort non-darcian effect on double-diffusive natural convection inside aninclined square dupuit-darcy porous cavity under a magnetic field
publisher VINCA Institute of Nuclear Sciences
series Thermal Science
issn 0354-9836
2334-7163
publishDate 2021-01-01
description This paper presents a numerical study of a double diffusive convection in an inclined square porous cavity filled with an electrically conducting binary mixture. The upper and bottom walls are maintained at a constant temperatures and concentrations whereas the left and right walls are assumed to be adiabatic and impermeable. A uniform and tilted magnetic field is applied at an angle, γ, about the horizontal, it is obvious that this is related to the orientation of the magnetic force that can help or oppose the buoyant force. The Dupuit-Darcy flow model, which includes effects of the inertial parameter, with the Boussinesq approximation, energy, and species transport equations are solved numerically using the classical finite difference method. Governing parameters of the problem under study are the thermal Rayleigh number, Hartmann number, Lewis number, the buoyancy ratio, inclination angle, and tilting angle of the magnetic field. The numerical results are reported on the contours of streamline, temperature, and concentration and for the average Nusselt and Sherwood numbers for various parametric conditions. It is demonstrated that both the inertial effect parameter and the magnetic field, have a strong influence on the strength of the natural convection heat and mass transfer within the porous layer.
topic double diffusive convection
inclined porous cavity
inertia effect
magnetic field
url http://www.doiserbia.nb.rs/img/doi/0354-9836/2021/0354-98361900271R.pdf
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AT hadidinoureddine nondarcianeffectondoublediffusivenaturalconvectioninsideaninclinedsquaredupuitdarcyporouscavityunderamagneticfield
AT bennacerrachid nondarcianeffectondoublediffusivenaturalconvectioninsideaninclinedsquaredupuitdarcyporouscavityunderamagneticfield
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