Magnetohydrodynamic Fluid Flow due to an Unsteady Stretching Sheet with Thermal Radiation, Porous Medium, and Variable Heat Flux

A shooting method has been introduced for determining the numerical solution of the ordinary differential equations which describe the Newtonian magnetohydrodynamic laminar fluid flow due to an unsteady stretching sheet together with the presence of thermal radiation and variable heat flux. The vari...

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Main Authors: Ahmed M. Megahed, Nourhan I. Ghoneim, M. Gnaneswara Reddy, Mostafa El-Khatib
Format: Article
Language:English
Published: Wiley 2021-01-01
Series:Advances in Astronomy
Online Access:http://dx.doi.org/10.1155/2021/6686883
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author Ahmed M. Megahed
Nourhan I. Ghoneim
M. Gnaneswara Reddy
Mostafa El-Khatib
author_facet Ahmed M. Megahed
Nourhan I. Ghoneim
M. Gnaneswara Reddy
Mostafa El-Khatib
author_sort Ahmed M. Megahed
collection DOAJ
description A shooting method has been introduced for determining the numerical solution of the ordinary differential equations which describe the Newtonian magnetohydrodynamic laminar fluid flow due to an unsteady stretching sheet together with the presence of thermal radiation and variable heat flux. The variable viscosity and variable conductivity are taken into consideration. Absence of magnetic field in some studies restricts the development of the energy-efficient heat transfer mechanism as is desired in numerous applications. The present study encompasses parameters such as unsteadiness parameter, porous parameter, viscosity parameter, magnetic number, radiation parameter, and conductivity parameter. It has been consummated that the proposed model is superior to other existing models for the industrial fluid.
format Article
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institution Kabale University
issn 1687-7969
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language English
publishDate 2021-01-01
publisher Wiley
record_format Article
series Advances in Astronomy
spelling doaj-art-e0dcf093178446fbb4f517fbb382c3ae2025-08-20T03:25:59ZengWileyAdvances in Astronomy1687-79691687-79772021-01-01202110.1155/2021/66868836686883Magnetohydrodynamic Fluid Flow due to an Unsteady Stretching Sheet with Thermal Radiation, Porous Medium, and Variable Heat FluxAhmed M. Megahed0Nourhan I. Ghoneim1M. Gnaneswara Reddy2Mostafa El-Khatib3Department of Mathematics, Faculty of Science, Benha University, Benha, EgyptNautical Department-Marine Engineering, International Maritime College Oman (IMCO), Suhar, OmanDepartment of Mathematics, Acharya Nagarjuna University Campus, Ongole 523001, IndiaBasic Sciences Department, Faculty of Engineering, Pharos University in Alexandria, Alexandria, EgyptA shooting method has been introduced for determining the numerical solution of the ordinary differential equations which describe the Newtonian magnetohydrodynamic laminar fluid flow due to an unsteady stretching sheet together with the presence of thermal radiation and variable heat flux. The variable viscosity and variable conductivity are taken into consideration. Absence of magnetic field in some studies restricts the development of the energy-efficient heat transfer mechanism as is desired in numerous applications. The present study encompasses parameters such as unsteadiness parameter, porous parameter, viscosity parameter, magnetic number, radiation parameter, and conductivity parameter. It has been consummated that the proposed model is superior to other existing models for the industrial fluid.http://dx.doi.org/10.1155/2021/6686883
spellingShingle Ahmed M. Megahed
Nourhan I. Ghoneim
M. Gnaneswara Reddy
Mostafa El-Khatib
Magnetohydrodynamic Fluid Flow due to an Unsteady Stretching Sheet with Thermal Radiation, Porous Medium, and Variable Heat Flux
Advances in Astronomy
title Magnetohydrodynamic Fluid Flow due to an Unsteady Stretching Sheet with Thermal Radiation, Porous Medium, and Variable Heat Flux
title_full Magnetohydrodynamic Fluid Flow due to an Unsteady Stretching Sheet with Thermal Radiation, Porous Medium, and Variable Heat Flux
title_fullStr Magnetohydrodynamic Fluid Flow due to an Unsteady Stretching Sheet with Thermal Radiation, Porous Medium, and Variable Heat Flux
title_full_unstemmed Magnetohydrodynamic Fluid Flow due to an Unsteady Stretching Sheet with Thermal Radiation, Porous Medium, and Variable Heat Flux
title_short Magnetohydrodynamic Fluid Flow due to an Unsteady Stretching Sheet with Thermal Radiation, Porous Medium, and Variable Heat Flux
title_sort magnetohydrodynamic fluid flow due to an unsteady stretching sheet with thermal radiation porous medium and variable heat flux
url http://dx.doi.org/10.1155/2021/6686883
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AT mgnaneswarareddy magnetohydrodynamicfluidflowduetoanunsteadystretchingsheetwiththermalradiationporousmediumandvariableheatflux
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