MHD flow and heat transfer of ferrofluid on stagnation point along flat plate with convective boundary condition and thermal radiation effect

This theoretical study deals with numerical solution of MHD convection laminar boundary layer flow and heat transfer on stagnation point along a stationary horizontal flat plate. For this purpose, ferrofluid which contains magnetite, Fe3O4 as a ferroparticles and water as a base fluid is considered....

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Main Authors: Siti Hanani, Mat Yasin, Muhammad Khairul Anuar, Mohamed, Zulkhibri, Ismail, Widodo, Basuki, Mohd Zuki, Salleh
Format: Conference or Workshop Item
Language:English
Published: IOP Publishing 2019
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/29815/1/MHD%20flow%20and%20heat%20transfer%20of%20ferrofluid%20on%20stagnation%20point.pdf
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author Siti Hanani, Mat Yasin
Muhammad Khairul Anuar, Mohamed
Zulkhibri, Ismail
Widodo, Basuki
Mohd Zuki, Salleh
author_facet Siti Hanani, Mat Yasin
Muhammad Khairul Anuar, Mohamed
Zulkhibri, Ismail
Widodo, Basuki
Mohd Zuki, Salleh
author_sort Siti Hanani, Mat Yasin
collection UMP
description This theoretical study deals with numerical solution of MHD convection laminar boundary layer flow and heat transfer on stagnation point along a stationary horizontal flat plate. For this purpose, ferrofluid which contains magnetite, Fe3O4 as a ferroparticles and water as a base fluid is considered. Ferrofluid has shown a particular achievement when the effect of external magnetic field applied, such as helping to control the properties of physical and flow of ferrofluid. The study starts with the formulation of the mathematical equations that governed the ferrofluid flow and heat transfer. The governing equation which is in the form of dimensional nonlinear partial differential equations are reduced to nonlinear ordinary differential equations by using appropriate similarity transformation and then solved numerically by using the Keller-box method. Numerical result is discussed in terms of pertinent effects that influence the ferrofluid flow and heat transfer like magnetic parameter, ferroparticles volume fraction parameter, Biot number and radiation parameter on velocity and temperature profiles. It is found that the temperature profile increase with an increase volume fraction of ferroparticles parameter, radiation parameter and Biot number and decrease with increasing magnetic parameter.
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spelling UMPir298152021-03-24T04:09:47Z http://umpir.ump.edu.my/id/eprint/29815/ MHD flow and heat transfer of ferrofluid on stagnation point along flat plate with convective boundary condition and thermal radiation effect Siti Hanani, Mat Yasin Muhammad Khairul Anuar, Mohamed Zulkhibri, Ismail Widodo, Basuki Mohd Zuki, Salleh QA Mathematics This theoretical study deals with numerical solution of MHD convection laminar boundary layer flow and heat transfer on stagnation point along a stationary horizontal flat plate. For this purpose, ferrofluid which contains magnetite, Fe3O4 as a ferroparticles and water as a base fluid is considered. Ferrofluid has shown a particular achievement when the effect of external magnetic field applied, such as helping to control the properties of physical and flow of ferrofluid. The study starts with the formulation of the mathematical equations that governed the ferrofluid flow and heat transfer. The governing equation which is in the form of dimensional nonlinear partial differential equations are reduced to nonlinear ordinary differential equations by using appropriate similarity transformation and then solved numerically by using the Keller-box method. Numerical result is discussed in terms of pertinent effects that influence the ferrofluid flow and heat transfer like magnetic parameter, ferroparticles volume fraction parameter, Biot number and radiation parameter on velocity and temperature profiles. It is found that the temperature profile increase with an increase volume fraction of ferroparticles parameter, radiation parameter and Biot number and decrease with increasing magnetic parameter. IOP Publishing 2019-11-07 Conference or Workshop Item PeerReviewed pdf en cc_by http://umpir.ump.edu.my/id/eprint/29815/1/MHD%20flow%20and%20heat%20transfer%20of%20ferrofluid%20on%20stagnation%20point.pdf Siti Hanani, Mat Yasin and Muhammad Khairul Anuar, Mohamed and Zulkhibri, Ismail and Widodo, Basuki and Mohd Zuki, Salleh (2019) MHD flow and heat transfer of ferrofluid on stagnation point along flat plate with convective boundary condition and thermal radiation effect. In: Journal of Physics: Conference Series, 2nd International Conference on Applied and Industrial Mathematics and Statistics (ICoAIMS 2019) , 23 - 25 July 2019 , The Zenith Hotel, Kuantan, Pahang. pp. 1-10., 1366 (012008). ISSN 1742-6588 (print); 1742-6596 (online) https://doi.org/10.1088/1742-6596/1366/1/012008
spellingShingle QA Mathematics
Siti Hanani, Mat Yasin
Muhammad Khairul Anuar, Mohamed
Zulkhibri, Ismail
Widodo, Basuki
Mohd Zuki, Salleh
MHD flow and heat transfer of ferrofluid on stagnation point along flat plate with convective boundary condition and thermal radiation effect
title MHD flow and heat transfer of ferrofluid on stagnation point along flat plate with convective boundary condition and thermal radiation effect
title_full MHD flow and heat transfer of ferrofluid on stagnation point along flat plate with convective boundary condition and thermal radiation effect
title_fullStr MHD flow and heat transfer of ferrofluid on stagnation point along flat plate with convective boundary condition and thermal radiation effect
title_full_unstemmed MHD flow and heat transfer of ferrofluid on stagnation point along flat plate with convective boundary condition and thermal radiation effect
title_short MHD flow and heat transfer of ferrofluid on stagnation point along flat plate with convective boundary condition and thermal radiation effect
title_sort mhd flow and heat transfer of ferrofluid on stagnation point along flat plate with convective boundary condition and thermal radiation effect
topic QA Mathematics
url http://umpir.ump.edu.my/id/eprint/29815/1/MHD%20flow%20and%20heat%20transfer%20of%20ferrofluid%20on%20stagnation%20point.pdf
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