Magneto-hydrodynamic peristaltic flow of a Jeffery fluid in the presence of heat transfer through a porous medium in an asymmetric channel

Abstract In the present paper, the effects of magnetic field and heat transfer on the peristaltic flow of a Jeffery fluid through a porous medium in an asymmetric channel have been studied. The governing non-linear partial differential equations representing the flow model are transmuted into linear...

Full description

Bibliographic Details
Main Authors: A. M. Abd-Alla, S. M. Abo-Dahab, Doaa. M. Salah, F. S. Bayones, M. A. Abdelhafez
Format: Article
Language:English
Published: Nature Portfolio 2023-11-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-023-48137-x
_version_ 1797415365913870336
author A. M. Abd-Alla
S. M. Abo-Dahab
Doaa. M. Salah
F. S. Bayones
M. A. Abdelhafez
author_facet A. M. Abd-Alla
S. M. Abo-Dahab
Doaa. M. Salah
F. S. Bayones
M. A. Abdelhafez
author_sort A. M. Abd-Alla
collection DOAJ
description Abstract In the present paper, the effects of magnetic field and heat transfer on the peristaltic flow of a Jeffery fluid through a porous medium in an asymmetric channel have been studied. The governing non-linear partial differential equations representing the flow model are transmuted into linear ones by employing the appropriate non-dimensional parameters under the assumption of long wavelength and low Reynolds number. Exact solutions are presented for the stream function, pressure gradient, and temperature. The frictional force and pressure rise are both computed using numerical integration. Using MATLAB R2023a software, a parametric analysis is performed, and the resulting data is represented graphically. For all physical quantities considered, numerical calculations were made and represented graphically. Trapping phenomena are discussed graphically. The obtained results can be applied to enhance pumping systems in engineering and gastrointestinal functions. This analysis permits body fluids such as blood and lymph to easily move inside the arteries and veins, allowing oxygen supply, waste elimination, and other necessary elements.
first_indexed 2024-03-09T05:47:34Z
format Article
id doaj.art-dea5133a06184e9cb944a940095d7f09
institution Directory Open Access Journal
issn 2045-2322
language English
last_indexed 2024-03-09T05:47:34Z
publishDate 2023-11-01
publisher Nature Portfolio
record_format Article
series Scientific Reports
spelling doaj.art-dea5133a06184e9cb944a940095d7f092023-12-03T12:20:25ZengNature PortfolioScientific Reports2045-23222023-11-0113111710.1038/s41598-023-48137-xMagneto-hydrodynamic peristaltic flow of a Jeffery fluid in the presence of heat transfer through a porous medium in an asymmetric channelA. M. Abd-Alla0S. M. Abo-Dahab1Doaa. M. Salah2F. S. Bayones3M. A. Abdelhafez4Department of Mathematics, Faculty of Science, Sohag UniversityDepartment of Mathematics, Faculty of Science, South Valley UniversityDepartment of Mathematics, Faculty of Science, Sohag UniversityDepartment of Mathematics and Statistics, College of Science, Taif UniversityDepartment of Mathematics, Faculty of Science, Sohag UniversityAbstract In the present paper, the effects of magnetic field and heat transfer on the peristaltic flow of a Jeffery fluid through a porous medium in an asymmetric channel have been studied. The governing non-linear partial differential equations representing the flow model are transmuted into linear ones by employing the appropriate non-dimensional parameters under the assumption of long wavelength and low Reynolds number. Exact solutions are presented for the stream function, pressure gradient, and temperature. The frictional force and pressure rise are both computed using numerical integration. Using MATLAB R2023a software, a parametric analysis is performed, and the resulting data is represented graphically. For all physical quantities considered, numerical calculations were made and represented graphically. Trapping phenomena are discussed graphically. The obtained results can be applied to enhance pumping systems in engineering and gastrointestinal functions. This analysis permits body fluids such as blood and lymph to easily move inside the arteries and veins, allowing oxygen supply, waste elimination, and other necessary elements.https://doi.org/10.1038/s41598-023-48137-x
spellingShingle A. M. Abd-Alla
S. M. Abo-Dahab
Doaa. M. Salah
F. S. Bayones
M. A. Abdelhafez
Magneto-hydrodynamic peristaltic flow of a Jeffery fluid in the presence of heat transfer through a porous medium in an asymmetric channel
Scientific Reports
title Magneto-hydrodynamic peristaltic flow of a Jeffery fluid in the presence of heat transfer through a porous medium in an asymmetric channel
title_full Magneto-hydrodynamic peristaltic flow of a Jeffery fluid in the presence of heat transfer through a porous medium in an asymmetric channel
title_fullStr Magneto-hydrodynamic peristaltic flow of a Jeffery fluid in the presence of heat transfer through a porous medium in an asymmetric channel
title_full_unstemmed Magneto-hydrodynamic peristaltic flow of a Jeffery fluid in the presence of heat transfer through a porous medium in an asymmetric channel
title_short Magneto-hydrodynamic peristaltic flow of a Jeffery fluid in the presence of heat transfer through a porous medium in an asymmetric channel
title_sort magneto hydrodynamic peristaltic flow of a jeffery fluid in the presence of heat transfer through a porous medium in an asymmetric channel
url https://doi.org/10.1038/s41598-023-48137-x
work_keys_str_mv AT amabdalla magnetohydrodynamicperistalticflowofajefferyfluidinthepresenceofheattransferthroughaporousmediuminanasymmetricchannel
AT smabodahab magnetohydrodynamicperistalticflowofajefferyfluidinthepresenceofheattransferthroughaporousmediuminanasymmetricchannel
AT doaamsalah magnetohydrodynamicperistalticflowofajefferyfluidinthepresenceofheattransferthroughaporousmediuminanasymmetricchannel
AT fsbayones magnetohydrodynamicperistalticflowofajefferyfluidinthepresenceofheattransferthroughaporousmediuminanasymmetricchannel
AT maabdelhafez magnetohydrodynamicperistalticflowofajefferyfluidinthepresenceofheattransferthroughaporousmediuminanasymmetricchannel