MHD and slip effect in micropolar hybrid nanofluid and heat transfer over a stretching sheet with thermal radiation and non-uniform heat source/sink

In the presence of slips, non-uniform heat source/sink, thermal radiation and magnetohydrodynamic (MHD), micropolar hybrid nanofluid and heat transfer over a stretching sheet has been studied. The problem is modelled as a mathematical formulation that involves a system of the partial differential eq...

Full description

Saved in:
Bibliographic Details
Main Authors: Ahmad Faizal, Nur Faizzati, Md. Arifin, Norihan, Rahim, Yong Faezah, Hafidzuddin, Mohd Ezad Hafidz, Wahi, Nadihah
Format: Article
Language:English
Published: Penerbit Akademia Baru 2020
Online Access:http://psasir.upm.edu.my/id/eprint/86738/1/MHD%20and%20slip%20effect%20in%20micropolar%20.pdf
http://psasir.upm.edu.my/id/eprint/86738/
https://akademiabaru.com/submit/index.php/cfdl/article/view/2335/1311
Tags: Add Tag
No Tags, Be the first to tag this record!
id my.upm.eprints.86738
record_format eprints
spelling my.upm.eprints.867382021-10-08T07:58:59Z http://psasir.upm.edu.my/id/eprint/86738/ MHD and slip effect in micropolar hybrid nanofluid and heat transfer over a stretching sheet with thermal radiation and non-uniform heat source/sink Ahmad Faizal, Nur Faizzati Md. Arifin, Norihan Rahim, Yong Faezah Hafidzuddin, Mohd Ezad Hafidz Wahi, Nadihah In the presence of slips, non-uniform heat source/sink, thermal radiation and magnetohydrodynamic (MHD), micropolar hybrid nanofluid and heat transfer over a stretching sheet has been studied. The problem is modelled as a mathematical formulation that involves a system of the partial differential equation. The similarity approach is adopted, and self-similar ordinary differential equations are obtained and then those are solved numerically using the shooting method. The flow field is affected by the presence of physical parameters such as micropolar parameter, magnetic field parameter, suction parameter and slip parameter whereas the temperature field is affected by thermal radiation parameter, space-dependent parameter, temperature-dependent internal heat generation/absorption parameter, Prantl number and Biot number. The skin friction coefficient, couple stress and local Nusselt number are tabulated and analysed. The effects of the governing parameters on the velocity profiles, angular velocity profiles and temperature profiles are illustrated graphically. The results of velocity profiles, angular velocity profiles and temperature profiles are also obtained for several values of each parameters involved. Penerbit Akademia Baru 2020-11 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/86738/1/MHD%20and%20slip%20effect%20in%20micropolar%20.pdf Ahmad Faizal, Nur Faizzati and Md. Arifin, Norihan and Rahim, Yong Faezah and Hafidzuddin, Mohd Ezad Hafidz and Wahi, Nadihah (2020) MHD and slip effect in micropolar hybrid nanofluid and heat transfer over a stretching sheet with thermal radiation and non-uniform heat source/sink. CFD Letters, 12 (11). 121 - 130. ISSN 2180-1363 https://akademiabaru.com/submit/index.php/cfdl/article/view/2335/1311 10.37934/cfdl.12.11.121130
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
description In the presence of slips, non-uniform heat source/sink, thermal radiation and magnetohydrodynamic (MHD), micropolar hybrid nanofluid and heat transfer over a stretching sheet has been studied. The problem is modelled as a mathematical formulation that involves a system of the partial differential equation. The similarity approach is adopted, and self-similar ordinary differential equations are obtained and then those are solved numerically using the shooting method. The flow field is affected by the presence of physical parameters such as micropolar parameter, magnetic field parameter, suction parameter and slip parameter whereas the temperature field is affected by thermal radiation parameter, space-dependent parameter, temperature-dependent internal heat generation/absorption parameter, Prantl number and Biot number. The skin friction coefficient, couple stress and local Nusselt number are tabulated and analysed. The effects of the governing parameters on the velocity profiles, angular velocity profiles and temperature profiles are illustrated graphically. The results of velocity profiles, angular velocity profiles and temperature profiles are also obtained for several values of each parameters involved.
format Article
author Ahmad Faizal, Nur Faizzati
Md. Arifin, Norihan
Rahim, Yong Faezah
Hafidzuddin, Mohd Ezad Hafidz
Wahi, Nadihah
spellingShingle Ahmad Faizal, Nur Faizzati
Md. Arifin, Norihan
Rahim, Yong Faezah
Hafidzuddin, Mohd Ezad Hafidz
Wahi, Nadihah
MHD and slip effect in micropolar hybrid nanofluid and heat transfer over a stretching sheet with thermal radiation and non-uniform heat source/sink
author_facet Ahmad Faizal, Nur Faizzati
Md. Arifin, Norihan
Rahim, Yong Faezah
Hafidzuddin, Mohd Ezad Hafidz
Wahi, Nadihah
author_sort Ahmad Faizal, Nur Faizzati
title MHD and slip effect in micropolar hybrid nanofluid and heat transfer over a stretching sheet with thermal radiation and non-uniform heat source/sink
title_short MHD and slip effect in micropolar hybrid nanofluid and heat transfer over a stretching sheet with thermal radiation and non-uniform heat source/sink
title_full MHD and slip effect in micropolar hybrid nanofluid and heat transfer over a stretching sheet with thermal radiation and non-uniform heat source/sink
title_fullStr MHD and slip effect in micropolar hybrid nanofluid and heat transfer over a stretching sheet with thermal radiation and non-uniform heat source/sink
title_full_unstemmed MHD and slip effect in micropolar hybrid nanofluid and heat transfer over a stretching sheet with thermal radiation and non-uniform heat source/sink
title_sort mhd and slip effect in micropolar hybrid nanofluid and heat transfer over a stretching sheet with thermal radiation and non-uniform heat source/sink
publisher Penerbit Akademia Baru
publishDate 2020
url http://psasir.upm.edu.my/id/eprint/86738/1/MHD%20and%20slip%20effect%20in%20micropolar%20.pdf
http://psasir.upm.edu.my/id/eprint/86738/
https://akademiabaru.com/submit/index.php/cfdl/article/view/2335/1311
_version_ 1713201296473849856
score 13.160551