Boundary Layer Flow of Williamson Hybrid Ferrofluid over A Permeable Stretching Sheet with Thermal Radiation Effects

This research investigated the convective boundary layer flow and heat transfer of Williamson hybrid ferrofluid over a permeable stretching sheet with thermal radiation effects. Human blood is employed as a based fluid while magnetite (Fe3O4) and copper (Cu) are taken as the hybrid ferroparticle. Th...

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Published in:CFD Letters
Main Author: Rosli W.M.H.W.; Mohamed M.K.A.; Sarif N.M.; Mohammad N.F.; Soid S.K.
Format: Article
Language:English
Published: Penerbit Akademia Baru 2023
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85148510848&doi=10.37934%2fcfdl.15.3.112122&partnerID=40&md5=700d3010a58b5d55bbf5afeb5b24a1c1
id 2-s2.0-85148510848
spelling 2-s2.0-85148510848
Rosli W.M.H.W.; Mohamed M.K.A.; Sarif N.M.; Mohammad N.F.; Soid S.K.
Boundary Layer Flow of Williamson Hybrid Ferrofluid over A Permeable Stretching Sheet with Thermal Radiation Effects
2023
CFD Letters
15
3
10.37934/cfdl.15.3.112122
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85148510848&doi=10.37934%2fcfdl.15.3.112122&partnerID=40&md5=700d3010a58b5d55bbf5afeb5b24a1c1
This research investigated the convective boundary layer flow and heat transfer of Williamson hybrid ferrofluid over a permeable stretching sheet with thermal radiation effects. Human blood is employed as a based fluid while magnetite (Fe3O4) and copper (Cu) are taken as the hybrid ferroparticle. The study started with transforming the nonlinear partial differential equation system that governed the model to a more convenience non-linear dimensionless ordinary differential equations using the similarity transformation. The transformed equations obtained then are solved numerically using the Runge-Kutta-Fehlberg (RKF45) method in Maple software. The characteristics and effects of stretching parameter, permeability parameter, thermal radiation parameter as well as the ferroparticle volume fraction in the Williamson hybrid ferrofluid towards the temperature profiles, velocity profiles as well as the Nusselt number and the skin friction coefficient are analysed and discussed. The result of this research for various pertinent parameter varies differently. It can be concluded that the increase in magnetic parameter, the Williamson parameter, the stretching parameter, and the permeability rate parameter increase the skin friction and reduced the velocity profile. Furthermore, the increase in stretching parameter, thermal radiation parameter and the permeability rate results to the increase in the Nusselt number. © 2023, Penerbit Akademia Baru. All rights reserved.
Penerbit Akademia Baru
21801363
English
Article
All Open Access; Hybrid Gold Open Access
author Rosli W.M.H.W.; Mohamed M.K.A.; Sarif N.M.; Mohammad N.F.; Soid S.K.
spellingShingle Rosli W.M.H.W.; Mohamed M.K.A.; Sarif N.M.; Mohammad N.F.; Soid S.K.
Boundary Layer Flow of Williamson Hybrid Ferrofluid over A Permeable Stretching Sheet with Thermal Radiation Effects
author_facet Rosli W.M.H.W.; Mohamed M.K.A.; Sarif N.M.; Mohammad N.F.; Soid S.K.
author_sort Rosli W.M.H.W.; Mohamed M.K.A.; Sarif N.M.; Mohammad N.F.; Soid S.K.
title Boundary Layer Flow of Williamson Hybrid Ferrofluid over A Permeable Stretching Sheet with Thermal Radiation Effects
title_short Boundary Layer Flow of Williamson Hybrid Ferrofluid over A Permeable Stretching Sheet with Thermal Radiation Effects
title_full Boundary Layer Flow of Williamson Hybrid Ferrofluid over A Permeable Stretching Sheet with Thermal Radiation Effects
title_fullStr Boundary Layer Flow of Williamson Hybrid Ferrofluid over A Permeable Stretching Sheet with Thermal Radiation Effects
title_full_unstemmed Boundary Layer Flow of Williamson Hybrid Ferrofluid over A Permeable Stretching Sheet with Thermal Radiation Effects
title_sort Boundary Layer Flow of Williamson Hybrid Ferrofluid over A Permeable Stretching Sheet with Thermal Radiation Effects
publishDate 2023
container_title CFD Letters
container_volume 15
container_issue 3
doi_str_mv 10.37934/cfdl.15.3.112122
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85148510848&doi=10.37934%2fcfdl.15.3.112122&partnerID=40&md5=700d3010a58b5d55bbf5afeb5b24a1c1
description This research investigated the convective boundary layer flow and heat transfer of Williamson hybrid ferrofluid over a permeable stretching sheet with thermal radiation effects. Human blood is employed as a based fluid while magnetite (Fe3O4) and copper (Cu) are taken as the hybrid ferroparticle. The study started with transforming the nonlinear partial differential equation system that governed the model to a more convenience non-linear dimensionless ordinary differential equations using the similarity transformation. The transformed equations obtained then are solved numerically using the Runge-Kutta-Fehlberg (RKF45) method in Maple software. The characteristics and effects of stretching parameter, permeability parameter, thermal radiation parameter as well as the ferroparticle volume fraction in the Williamson hybrid ferrofluid towards the temperature profiles, velocity profiles as well as the Nusselt number and the skin friction coefficient are analysed and discussed. The result of this research for various pertinent parameter varies differently. It can be concluded that the increase in magnetic parameter, the Williamson parameter, the stretching parameter, and the permeability rate parameter increase the skin friction and reduced the velocity profile. Furthermore, the increase in stretching parameter, thermal radiation parameter and the permeability rate results to the increase in the Nusselt number. © 2023, Penerbit Akademia Baru. All rights reserved.
publisher Penerbit Akademia Baru
issn 21801363
language English
format Article
accesstype All Open Access; Hybrid Gold Open Access
record_format scopus
collection Scopus
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