Mathematical modeling on magnetohydrodynamics upper convected maxwell fluid flow past a flat plate using spectral relaxation approach.

The focus of this treatise is on the scrutiny of MHD heat and mass transfer motion of upper convection Maxwell (UCM) fluid in a thermally radiated flat plate. The models of the flow equations were considered when there is a temperature difference: the Cattaneo-Christov model and the Soret-Dufour mec...

Full description

Bibliographic Details
Main Authors: Muhammad, Muhammad Hassan, Abas, Siti Sabariah, Jaafar, Nurul Aini, Usman, Abubakar, Mamat, Mustafa
Format: Article
Language:English
Published: Semarak Ilmu Publishing 2023
Subjects:
Online Access:http://eprints.utm.my/106172/1/NurulAiniJaafar2023_MathematicalModelingonMagnetohydrodynamicsUpperConvected.pdf
_version_ 1811132283976941568
author Muhammad, Muhammad Hassan
Abas, Siti Sabariah
Jaafar, Nurul Aini
Usman, Abubakar
Mamat, Mustafa
author_facet Muhammad, Muhammad Hassan
Abas, Siti Sabariah
Jaafar, Nurul Aini
Usman, Abubakar
Mamat, Mustafa
author_sort Muhammad, Muhammad Hassan
collection ePrints
description The focus of this treatise is on the scrutiny of MHD heat and mass transfer motion of upper convection Maxwell (UCM) fluid in a thermally radiated flat plate. The models of the flow equations were considered when there is a temperature difference: the Cattaneo-Christov model and the Soret-Dufour mechanisms. A magnetic field of firmness was inflicted in opposition to the flow. The flow inspection is controlled by partial differential equations (PDEs). Suitable similarity variables were utilised on the PDEs to obtain a set of nonlinear ordinary differential equations (ODEs). The simplified set of ODEs shall be answered by exploiting the spectral relaxation method (SRM). The SRM is a numerical technique that solves differential equations by utilising the repetition of a sequence of operations that is iterated iteratively by first decoupling the coupled systems of equations. The magnetism was found to decline the velocity and hydrodynamic boundary layer due to the Lorentz force. The Deborah number was found to enhance the velocity contour. The Eckert number was discovered to improve the temperature profile due to the production of heat energy within the boundary layer. An increase in Prandtl number was found to enhance the hydrodynamic and thermal boundary layer thickness. The local skin friction and Nusselt number were found to be elevated by the increase in the Dufour parameter.
first_indexed 2024-09-24T00:00:52Z
format Article
id utm.eprints-106172
institution Universiti Teknologi Malaysia - ePrints
language English
last_indexed 2024-09-24T00:00:52Z
publishDate 2023
publisher Semarak Ilmu Publishing
record_format dspace
spelling utm.eprints-1061722024-06-10T06:32:41Z http://eprints.utm.my/106172/ Mathematical modeling on magnetohydrodynamics upper convected maxwell fluid flow past a flat plate using spectral relaxation approach. Muhammad, Muhammad Hassan Abas, Siti Sabariah Jaafar, Nurul Aini Usman, Abubakar Mamat, Mustafa QA Mathematics The focus of this treatise is on the scrutiny of MHD heat and mass transfer motion of upper convection Maxwell (UCM) fluid in a thermally radiated flat plate. The models of the flow equations were considered when there is a temperature difference: the Cattaneo-Christov model and the Soret-Dufour mechanisms. A magnetic field of firmness was inflicted in opposition to the flow. The flow inspection is controlled by partial differential equations (PDEs). Suitable similarity variables were utilised on the PDEs to obtain a set of nonlinear ordinary differential equations (ODEs). The simplified set of ODEs shall be answered by exploiting the spectral relaxation method (SRM). The SRM is a numerical technique that solves differential equations by utilising the repetition of a sequence of operations that is iterated iteratively by first decoupling the coupled systems of equations. The magnetism was found to decline the velocity and hydrodynamic boundary layer due to the Lorentz force. The Deborah number was found to enhance the velocity contour. The Eckert number was discovered to improve the temperature profile due to the production of heat energy within the boundary layer. An increase in Prandtl number was found to enhance the hydrodynamic and thermal boundary layer thickness. The local skin friction and Nusselt number were found to be elevated by the increase in the Dufour parameter. Semarak Ilmu Publishing 2023-05 Article PeerReviewed application/pdf en http://eprints.utm.my/106172/1/NurulAiniJaafar2023_MathematicalModelingonMagnetohydrodynamicsUpperConvected.pdf Muhammad, Muhammad Hassan and Abas, Siti Sabariah and Jaafar, Nurul Aini and Usman, Abubakar and Mamat, Mustafa (2023) Mathematical modeling on magnetohydrodynamics upper convected maxwell fluid flow past a flat plate using spectral relaxation approach. Journal of Advanced Research in Fluid Mechanics and Thermal Sciences, 106 (1). pp. 23-38. ISSN 2289-7879 http://dx.doi.org/10.37934/arfmts.106.1.2338 DOI: 10.37934/arfmts.106.1.2338
spellingShingle QA Mathematics
Muhammad, Muhammad Hassan
Abas, Siti Sabariah
Jaafar, Nurul Aini
Usman, Abubakar
Mamat, Mustafa
Mathematical modeling on magnetohydrodynamics upper convected maxwell fluid flow past a flat plate using spectral relaxation approach.
title Mathematical modeling on magnetohydrodynamics upper convected maxwell fluid flow past a flat plate using spectral relaxation approach.
title_full Mathematical modeling on magnetohydrodynamics upper convected maxwell fluid flow past a flat plate using spectral relaxation approach.
title_fullStr Mathematical modeling on magnetohydrodynamics upper convected maxwell fluid flow past a flat plate using spectral relaxation approach.
title_full_unstemmed Mathematical modeling on magnetohydrodynamics upper convected maxwell fluid flow past a flat plate using spectral relaxation approach.
title_short Mathematical modeling on magnetohydrodynamics upper convected maxwell fluid flow past a flat plate using spectral relaxation approach.
title_sort mathematical modeling on magnetohydrodynamics upper convected maxwell fluid flow past a flat plate using spectral relaxation approach
topic QA Mathematics
url http://eprints.utm.my/106172/1/NurulAiniJaafar2023_MathematicalModelingonMagnetohydrodynamicsUpperConvected.pdf
work_keys_str_mv AT muhammadmuhammadhassan mathematicalmodelingonmagnetohydrodynamicsupperconvectedmaxwellfluidflowpastaflatplateusingspectralrelaxationapproach
AT abassitisabariah mathematicalmodelingonmagnetohydrodynamicsupperconvectedmaxwellfluidflowpastaflatplateusingspectralrelaxationapproach
AT jaafarnurulaini mathematicalmodelingonmagnetohydrodynamicsupperconvectedmaxwellfluidflowpastaflatplateusingspectralrelaxationapproach
AT usmanabubakar mathematicalmodelingonmagnetohydrodynamicsupperconvectedmaxwellfluidflowpastaflatplateusingspectralrelaxationapproach
AT mamatmustafa mathematicalmodelingonmagnetohydrodynamicsupperconvectedmaxwellfluidflowpastaflatplateusingspectralrelaxationapproach