Numerical solution of boundary layer flow over a moving plate in a nanofluid with viscous dissipation: A revised model

Model of boundary layer flow over a moving plate in nanofluid with viscous dissipation effect is revisited. A new boundary condition is applied with the assumption that there is no nanoparticle flux at the surface. The nanoparticle volume fraction on the boundary is passively control rather than act...

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Main Authors: Zulkifli, Siti Norfatihah, Md Sarif, Norhafizah, Salleh, M. Z.
Format: Article
Language:English
Published: Akademia Baru Publishing 2019
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Online Access:http://umpir.ump.edu.my/id/eprint/35236/1/1.%20FULL%20PAPER%20JFMTS.pdf
http://umpir.ump.edu.my/id/eprint/35236/
https://akademiabaru.com/submit/index.php/arfmts/article/view/2508
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spelling my.ump.umpir.352362022-10-13T01:31:33Z http://umpir.ump.edu.my/id/eprint/35236/ Numerical solution of boundary layer flow over a moving plate in a nanofluid with viscous dissipation: A revised model Zulkifli, Siti Norfatihah Md Sarif, Norhafizah Salleh, M. Z. QA Mathematics Model of boundary layer flow over a moving plate in nanofluid with viscous dissipation effect is revisited. A new boundary condition is applied with the assumption that there is no nanoparticle flux at the surface. The nanoparticle volume fraction on the boundary is passively control rather than active control and this makes the model more realistic. A similarity transformation is introduced to reduce the governing non-linear partial differential equation into ordinary differential equation. The ordinary differential equations are computed numerically through numerical method namely Runge-Kutta Felhberg (RKF) technique. Validations of the result has been made by comparing the present results with results from the previous studies. In this study, it is found that the presence of viscous dissipation contributes to an increase in temperature profile. In addition, it is observed that an increment in Brownian motion parameter produce negligible effect on temperature profile. Furthermore, both nanoparticle concentration and temperature profile intensify with an increase of thermophoresis parameter. Akademia Baru Publishing 2019-04-13 Article PeerReviewed pdf en cc_by_nc_4 http://umpir.ump.edu.my/id/eprint/35236/1/1.%20FULL%20PAPER%20JFMTS.pdf Zulkifli, Siti Norfatihah and Md Sarif, Norhafizah and Salleh, M. Z. (2019) Numerical solution of boundary layer flow over a moving plate in a nanofluid with viscous dissipation: A revised model. Journal of Advanced Research in Fluid Mechanics and Thermal Sciences, 56 (2). pp. 287-295. ISSN 2289-7879 https://akademiabaru.com/submit/index.php/arfmts/article/view/2508
institution Universiti Malaysia Pahang
building UMP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Pahang
content_source UMP Institutional Repository
url_provider http://umpir.ump.edu.my/
language English
topic QA Mathematics
spellingShingle QA Mathematics
Zulkifli, Siti Norfatihah
Md Sarif, Norhafizah
Salleh, M. Z.
Numerical solution of boundary layer flow over a moving plate in a nanofluid with viscous dissipation: A revised model
description Model of boundary layer flow over a moving plate in nanofluid with viscous dissipation effect is revisited. A new boundary condition is applied with the assumption that there is no nanoparticle flux at the surface. The nanoparticle volume fraction on the boundary is passively control rather than active control and this makes the model more realistic. A similarity transformation is introduced to reduce the governing non-linear partial differential equation into ordinary differential equation. The ordinary differential equations are computed numerically through numerical method namely Runge-Kutta Felhberg (RKF) technique. Validations of the result has been made by comparing the present results with results from the previous studies. In this study, it is found that the presence of viscous dissipation contributes to an increase in temperature profile. In addition, it is observed that an increment in Brownian motion parameter produce negligible effect on temperature profile. Furthermore, both nanoparticle concentration and temperature profile intensify with an increase of thermophoresis parameter.
format Article
author Zulkifli, Siti Norfatihah
Md Sarif, Norhafizah
Salleh, M. Z.
author_facet Zulkifli, Siti Norfatihah
Md Sarif, Norhafizah
Salleh, M. Z.
author_sort Zulkifli, Siti Norfatihah
title Numerical solution of boundary layer flow over a moving plate in a nanofluid with viscous dissipation: A revised model
title_short Numerical solution of boundary layer flow over a moving plate in a nanofluid with viscous dissipation: A revised model
title_full Numerical solution of boundary layer flow over a moving plate in a nanofluid with viscous dissipation: A revised model
title_fullStr Numerical solution of boundary layer flow over a moving plate in a nanofluid with viscous dissipation: A revised model
title_full_unstemmed Numerical solution of boundary layer flow over a moving plate in a nanofluid with viscous dissipation: A revised model
title_sort numerical solution of boundary layer flow over a moving plate in a nanofluid with viscous dissipation: a revised model
publisher Akademia Baru Publishing
publishDate 2019
url http://umpir.ump.edu.my/id/eprint/35236/1/1.%20FULL%20PAPER%20JFMTS.pdf
http://umpir.ump.edu.my/id/eprint/35236/
https://akademiabaru.com/submit/index.php/arfmts/article/view/2508
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score 13.214268