Numerical Study of Mixed Convection Heat Transfer in Methanol based Micropolar Nanofluid about a Horizontal Circular Cylinder

In this article, the mixed convection boundary layer flow about a horizontal circular cylinder with a micropolar nanofluid, which is maintained at a constant surface heat flux, has been investigated. Three types of nanoparticles with distinct conductivities, namely, graphene oxide, copper and copp...

Full description

Saved in:
Bibliographic Details
Main Authors: Mustafa, Mamat, Swalmeh, M.Z, Alkasasbeh, H.T, Hussanan, A
Format: Conference or Workshop Item
Language:English
Published: 2019
Subjects:
Online Access:http://eprints.unisza.edu.my/1924/1/FH03-FIK-19-36119.pdf
http://eprints.unisza.edu.my/1924/
Tags: Add Tag
No Tags, Be the first to tag this record!
id my-unisza-ir.1924
record_format eprints
spelling my-unisza-ir.19242020-11-24T06:48:20Z http://eprints.unisza.edu.my/1924/ Numerical Study of Mixed Convection Heat Transfer in Methanol based Micropolar Nanofluid about a Horizontal Circular Cylinder Mustafa, Mamat Swalmeh, M.Z Alkasasbeh, H.T Hussanan, A QA Mathematics In this article, the mixed convection boundary layer flow about a horizontal circular cylinder with a micropolar nanofluid, which is maintained at a constant surface heat flux, has been investigated. Three types of nanoparticles with distinct conductivities, namely, graphene oxide, copper and copper oxide are considered and suspended in methanol based micropolar nanofluid. The governing equations are transformed into nonlinear PDEs by applying the similarity transformations and then solved numerically by an implicit finite difference scheme known as Keller-box method. The results for the local wall temperature, local skin friction coefficient, temperature, velocity and angular velocity are plotted and discussed for different parameters such as nanoparticles volume fraction and mixed convection parameter in view of thermo-physical properties of nanoparticles and base fluid. Moreover, numerical results for the local wall temperature and local skin friction coefficient are obtained. It is found that copper (Cu) suspended methanol based micropolar nanofluid have higher velocity than the copper oxide (CuO) or graphene oxide (GO) methanol based micropolar nanofluid. Comparison have been made with published results on Newtonian fluid under special cases and obtained in close agreement. 2019 Conference or Workshop Item NonPeerReviewed text en http://eprints.unisza.edu.my/1924/1/FH03-FIK-19-36119.pdf Mustafa, Mamat and Swalmeh, M.Z and Alkasasbeh, H.T and Hussanan, A (2019) Numerical Study of Mixed Convection Heat Transfer in Methanol based Micropolar Nanofluid about a Horizontal Circular Cylinder. In: 2nd International Conference on Applied and Industrial Mathematics and Statistics 2019, 23 July 2019, The Zenith Hotel Kuantan, Pahang.
institution Universiti Sultan Zainal Abidin
building UNISZA Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Sultan Zainal Abidin
content_source UNISZA Institutional Repository
url_provider https://eprints.unisza.edu.my/
language English
topic QA Mathematics
spellingShingle QA Mathematics
Mustafa, Mamat
Swalmeh, M.Z
Alkasasbeh, H.T
Hussanan, A
Numerical Study of Mixed Convection Heat Transfer in Methanol based Micropolar Nanofluid about a Horizontal Circular Cylinder
description In this article, the mixed convection boundary layer flow about a horizontal circular cylinder with a micropolar nanofluid, which is maintained at a constant surface heat flux, has been investigated. Three types of nanoparticles with distinct conductivities, namely, graphene oxide, copper and copper oxide are considered and suspended in methanol based micropolar nanofluid. The governing equations are transformed into nonlinear PDEs by applying the similarity transformations and then solved numerically by an implicit finite difference scheme known as Keller-box method. The results for the local wall temperature, local skin friction coefficient, temperature, velocity and angular velocity are plotted and discussed for different parameters such as nanoparticles volume fraction and mixed convection parameter in view of thermo-physical properties of nanoparticles and base fluid. Moreover, numerical results for the local wall temperature and local skin friction coefficient are obtained. It is found that copper (Cu) suspended methanol based micropolar nanofluid have higher velocity than the copper oxide (CuO) or graphene oxide (GO) methanol based micropolar nanofluid. Comparison have been made with published results on Newtonian fluid under special cases and obtained in close agreement.
format Conference or Workshop Item
author Mustafa, Mamat
Swalmeh, M.Z
Alkasasbeh, H.T
Hussanan, A
author_facet Mustafa, Mamat
Swalmeh, M.Z
Alkasasbeh, H.T
Hussanan, A
author_sort Mustafa, Mamat
title Numerical Study of Mixed Convection Heat Transfer in Methanol based Micropolar Nanofluid about a Horizontal Circular Cylinder
title_short Numerical Study of Mixed Convection Heat Transfer in Methanol based Micropolar Nanofluid about a Horizontal Circular Cylinder
title_full Numerical Study of Mixed Convection Heat Transfer in Methanol based Micropolar Nanofluid about a Horizontal Circular Cylinder
title_fullStr Numerical Study of Mixed Convection Heat Transfer in Methanol based Micropolar Nanofluid about a Horizontal Circular Cylinder
title_full_unstemmed Numerical Study of Mixed Convection Heat Transfer in Methanol based Micropolar Nanofluid about a Horizontal Circular Cylinder
title_sort numerical study of mixed convection heat transfer in methanol based micropolar nanofluid about a horizontal circular cylinder
publishDate 2019
url http://eprints.unisza.edu.my/1924/1/FH03-FIK-19-36119.pdf
http://eprints.unisza.edu.my/1924/
_version_ 1684657773637271552
score 13.160551