Effects of Soret and Non-Uniform Heat Source on MHD Non-Darcian Convective Flow over a Stretching Sheet in a Dissipative Micropolar Fluid with Radiation

This study presents a numerical analysis on the effects of Soret, variable thermal conductivity, viscous-Ohmic dissipation, non-uniform heat sources, on steady two-dimensional hydromagnetic mixed convective heat and mass transfer flow of a micropolar fluid over a stretching sheet embedded in a non-D...

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Main Authors: Fazle Mabood, S. M. Ibrahim
Format: Article
Language:English
Published: Isfahan University of Technology 2016-01-01
Series:Journal of Applied Fluid Mechanics
Subjects:
Online Access:http://jafmonline.net/JournalArchive/download?file_ID=40902&issue_ID=236
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spelling doaj-0d0e1dfbfd784984ade7089786f5d3b72020-11-25T02:01:37ZengIsfahan University of Technology Journal of Applied Fluid Mechanics1735-35722016-01-019525032513.Effects of Soret and Non-Uniform Heat Source on MHD Non-Darcian Convective Flow over a Stretching Sheet in a Dissipative Micropolar Fluid with RadiationFazle Mabood0S. M. Ibrahim1Edwardes College PeshawarDept. of Mathematics, GITAM University, Vishakhapatnam, Andhra Pradesh India 530045This study presents a numerical analysis on the effects of Soret, variable thermal conductivity, viscous-Ohmic dissipation, non-uniform heat sources, on steady two-dimensional hydromagnetic mixed convective heat and mass transfer flow of a micropolar fluid over a stretching sheet embedded in a non-Darcian porous medium with thermal radiation and chemical reaction. The governing differential equations are transformed into a set of non-linear coupled ordinary differential equations which are then solved numerically by using the fifth-order Runge-Kutta-Fehlberg method with shooting technique. Numerical solutions are obtained for the velocity, angular velocity, temperature and concentration profiles for various parametric values, and then results are presented graphically as well as skin-friction coefficient, and also local Nusselt number and local Sherwood number for different physical parameters are shown graphically and in tabular form. A critical analysis with earlier published papers was done, and the results were found to be in accordance with each other.http://jafmonline.net/JournalArchive/download?file_ID=40902&issue_ID=236soret number; thermal radiation; non-darcian number; non-uniform heat source/sink; mhd; micropoalr fluid; stretching sheet.
collection DOAJ
language English
format Article
sources DOAJ
author Fazle Mabood
S. M. Ibrahim
spellingShingle Fazle Mabood
S. M. Ibrahim
Effects of Soret and Non-Uniform Heat Source on MHD Non-Darcian Convective Flow over a Stretching Sheet in a Dissipative Micropolar Fluid with Radiation
Journal of Applied Fluid Mechanics
soret number; thermal radiation; non-darcian number; non-uniform heat source/sink; mhd; micropoalr fluid; stretching sheet.
author_facet Fazle Mabood
S. M. Ibrahim
author_sort Fazle Mabood
title Effects of Soret and Non-Uniform Heat Source on MHD Non-Darcian Convective Flow over a Stretching Sheet in a Dissipative Micropolar Fluid with Radiation
title_short Effects of Soret and Non-Uniform Heat Source on MHD Non-Darcian Convective Flow over a Stretching Sheet in a Dissipative Micropolar Fluid with Radiation
title_full Effects of Soret and Non-Uniform Heat Source on MHD Non-Darcian Convective Flow over a Stretching Sheet in a Dissipative Micropolar Fluid with Radiation
title_fullStr Effects of Soret and Non-Uniform Heat Source on MHD Non-Darcian Convective Flow over a Stretching Sheet in a Dissipative Micropolar Fluid with Radiation
title_full_unstemmed Effects of Soret and Non-Uniform Heat Source on MHD Non-Darcian Convective Flow over a Stretching Sheet in a Dissipative Micropolar Fluid with Radiation
title_sort effects of soret and non-uniform heat source on mhd non-darcian convective flow over a stretching sheet in a dissipative micropolar fluid with radiation
publisher Isfahan University of Technology
series Journal of Applied Fluid Mechanics
issn 1735-3572
publishDate 2016-01-01
description This study presents a numerical analysis on the effects of Soret, variable thermal conductivity, viscous-Ohmic dissipation, non-uniform heat sources, on steady two-dimensional hydromagnetic mixed convective heat and mass transfer flow of a micropolar fluid over a stretching sheet embedded in a non-Darcian porous medium with thermal radiation and chemical reaction. The governing differential equations are transformed into a set of non-linear coupled ordinary differential equations which are then solved numerically by using the fifth-order Runge-Kutta-Fehlberg method with shooting technique. Numerical solutions are obtained for the velocity, angular velocity, temperature and concentration profiles for various parametric values, and then results are presented graphically as well as skin-friction coefficient, and also local Nusselt number and local Sherwood number for different physical parameters are shown graphically and in tabular form. A critical analysis with earlier published papers was done, and the results were found to be in accordance with each other.
topic soret number; thermal radiation; non-darcian number; non-uniform heat source/sink; mhd; micropoalr fluid; stretching sheet.
url http://jafmonline.net/JournalArchive/download?file_ID=40902&issue_ID=236
work_keys_str_mv AT fazlemabood effectsofsoretandnonuniformheatsourceonmhdnondarcianconvectiveflowoverastretchingsheetinadissipativemicropolarfluidwithradiation
AT smibrahim effectsofsoretandnonuniformheatsourceonmhdnondarcianconvectiveflowoverastretchingsheetinadissipativemicropolarfluidwithradiation
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