MHD free convection and mass transfer flow over an infinite vertical porous plate with viscous dissipation

An unsteady, two-dimensional, hydromagnetic, laminar mixed convective boundary layer flow of an incompressible and electrically-conducting fluid along an infinite vertical plate embedded in the porous medium with heat and mass transfer is analyzed, by taking into account the effect of viscous di...

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Bibliographic Details
Main Authors: Poonia Hemant, Chaudhary R.C.
Format: Article
Language:English
Published: Serbian Society of Mechanics & Mathematical Institute of the Serbian Academy of Sciences and Arts, Belgrade 2010-01-01
Series:Theoretical and Applied Mechanics
Subjects:
MHD
Online Access:http://www.doiserbia.nb.rs/img/doi/1450-5584/2010/1450-55841004263P.pdf
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spelling doaj-806da648f60843a1b1c806fd6d5e0b6c2020-11-25T01:37:12ZengSerbian Society of Mechanics & Mathematical Institute of the Serbian Academy of Sciences and Arts, BelgradeTheoretical and Applied Mechanics1450-55842010-01-0137426328710.2298/TAM1004263PMHD free convection and mass transfer flow over an infinite vertical porous plate with viscous dissipationPoonia HemantChaudhary R.C.An unsteady, two-dimensional, hydromagnetic, laminar mixed convective boundary layer flow of an incompressible and electrically-conducting fluid along an infinite vertical plate embedded in the porous medium with heat and mass transfer is analyzed, by taking into account the effect of viscous dissipation. The dimensionless governing equations for this investigation are solved analytically using two-term harmonic and non-harmonic functions. Numerical evaluation of the analytical results is performed and graphical results for velocity, temperature and concentration profiles within the boundary layer are discussed. The results show that increased cooling (Gr > 0) of the plate and the Eckert number leads to a rise in the velocity profile. Also, an increase in Eckert number leads to an increase in the temperature. Effects of Sc on velocity and concentration are discussed and shown graphically. http://www.doiserbia.nb.rs/img/doi/1450-5584/2010/1450-55841004263P.pdfMHDheat and mass transferfree convection flowporous mediumviscous dissipation
collection DOAJ
language English
format Article
sources DOAJ
author Poonia Hemant
Chaudhary R.C.
spellingShingle Poonia Hemant
Chaudhary R.C.
MHD free convection and mass transfer flow over an infinite vertical porous plate with viscous dissipation
Theoretical and Applied Mechanics
MHD
heat and mass transfer
free convection flow
porous medium
viscous dissipation
author_facet Poonia Hemant
Chaudhary R.C.
author_sort Poonia Hemant
title MHD free convection and mass transfer flow over an infinite vertical porous plate with viscous dissipation
title_short MHD free convection and mass transfer flow over an infinite vertical porous plate with viscous dissipation
title_full MHD free convection and mass transfer flow over an infinite vertical porous plate with viscous dissipation
title_fullStr MHD free convection and mass transfer flow over an infinite vertical porous plate with viscous dissipation
title_full_unstemmed MHD free convection and mass transfer flow over an infinite vertical porous plate with viscous dissipation
title_sort mhd free convection and mass transfer flow over an infinite vertical porous plate with viscous dissipation
publisher Serbian Society of Mechanics & Mathematical Institute of the Serbian Academy of Sciences and Arts, Belgrade
series Theoretical and Applied Mechanics
issn 1450-5584
publishDate 2010-01-01
description An unsteady, two-dimensional, hydromagnetic, laminar mixed convective boundary layer flow of an incompressible and electrically-conducting fluid along an infinite vertical plate embedded in the porous medium with heat and mass transfer is analyzed, by taking into account the effect of viscous dissipation. The dimensionless governing equations for this investigation are solved analytically using two-term harmonic and non-harmonic functions. Numerical evaluation of the analytical results is performed and graphical results for velocity, temperature and concentration profiles within the boundary layer are discussed. The results show that increased cooling (Gr > 0) of the plate and the Eckert number leads to a rise in the velocity profile. Also, an increase in Eckert number leads to an increase in the temperature. Effects of Sc on velocity and concentration are discussed and shown graphically.
topic MHD
heat and mass transfer
free convection flow
porous medium
viscous dissipation
url http://www.doiserbia.nb.rs/img/doi/1450-5584/2010/1450-55841004263P.pdf
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