Forced convection boundary layer flow in a thin nanofluid film on a stretching sheet under the effects of suction and injection

The forced convection thin-film hybrid nanofluid flow over a stretching sheet with heat transfer is investigated in the present study. The effect of the suction and injection is considered. The concerned hybrid nanoparticles are copper and alumina which are dissolved in blood base fluid. Suitable si...

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Main Authors: Kamis, Nur Ilyana, Lim, Yeou Jiann, Ahmad Khairuddin, Taufiq Khairi, Shafie, Sharidan, Md. Basir, Md. Faisal
Format: Article
Language:English
Published: Tamkang University 2022
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Online Access:http://eprints.utm.my/id/eprint/97202/1/SharidanShafie2022_ForcedConvectionBoundaryLayerFlow.pdf
http://eprints.utm.my/id/eprint/97202/
http://dx.doi.org/10.6180/jase.202206_25(3).0009
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spelling my.utm.972022022-09-26T01:22:58Z http://eprints.utm.my/id/eprint/97202/ Forced convection boundary layer flow in a thin nanofluid film on a stretching sheet under the effects of suction and injection Kamis, Nur Ilyana Lim, Yeou Jiann Ahmad Khairuddin, Taufiq Khairi Shafie, Sharidan Md. Basir, Md. Faisal QA Mathematics The forced convection thin-film hybrid nanofluid flow over a stretching sheet with heat transfer is investigated in the present study. The effect of the suction and injection is considered. The concerned hybrid nanoparticles are copper and alumina which are dissolved in blood base fluid. Suitable similarity variables are applied to convert the nonlinear governing partial differential equations subject to appropriate boundary conditions into a set of ordinary differential equations. The MATLAB solver bvp4c is utilized to solve the similarity transformed governing equations numerically. There exists a great agreement when the present computed findings are compared with the published results for a limiting condition. Dual solutions are obtained for the velocity and temperature profiles. Conflict behavior is observed for the effect of the unsteadiness parameter and mass transfer parameter on both solutions of the velocity and temperature distributions. The increment of the mass transfer parameter has enhanced the velocity profile in the injection case, while an opposite trend is detected in the suction situation. Tamkang University 2022 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/97202/1/SharidanShafie2022_ForcedConvectionBoundaryLayerFlow.pdf Kamis, Nur Ilyana and Lim, Yeou Jiann and Ahmad Khairuddin, Taufiq Khairi and Shafie, Sharidan and Md. Basir, Md. Faisal (2022) Forced convection boundary layer flow in a thin nanofluid film on a stretching sheet under the effects of suction and injection. Journal of Applied Science and Engineering (Taiwan), 25 (3). pp. 429-435. ISSN 2708-9967 http://dx.doi.org/10.6180/jase.202206_25(3).0009 DOI : 10.6180/jase.202206_25(3).0009
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic QA Mathematics
spellingShingle QA Mathematics
Kamis, Nur Ilyana
Lim, Yeou Jiann
Ahmad Khairuddin, Taufiq Khairi
Shafie, Sharidan
Md. Basir, Md. Faisal
Forced convection boundary layer flow in a thin nanofluid film on a stretching sheet under the effects of suction and injection
description The forced convection thin-film hybrid nanofluid flow over a stretching sheet with heat transfer is investigated in the present study. The effect of the suction and injection is considered. The concerned hybrid nanoparticles are copper and alumina which are dissolved in blood base fluid. Suitable similarity variables are applied to convert the nonlinear governing partial differential equations subject to appropriate boundary conditions into a set of ordinary differential equations. The MATLAB solver bvp4c is utilized to solve the similarity transformed governing equations numerically. There exists a great agreement when the present computed findings are compared with the published results for a limiting condition. Dual solutions are obtained for the velocity and temperature profiles. Conflict behavior is observed for the effect of the unsteadiness parameter and mass transfer parameter on both solutions of the velocity and temperature distributions. The increment of the mass transfer parameter has enhanced the velocity profile in the injection case, while an opposite trend is detected in the suction situation.
format Article
author Kamis, Nur Ilyana
Lim, Yeou Jiann
Ahmad Khairuddin, Taufiq Khairi
Shafie, Sharidan
Md. Basir, Md. Faisal
author_facet Kamis, Nur Ilyana
Lim, Yeou Jiann
Ahmad Khairuddin, Taufiq Khairi
Shafie, Sharidan
Md. Basir, Md. Faisal
author_sort Kamis, Nur Ilyana
title Forced convection boundary layer flow in a thin nanofluid film on a stretching sheet under the effects of suction and injection
title_short Forced convection boundary layer flow in a thin nanofluid film on a stretching sheet under the effects of suction and injection
title_full Forced convection boundary layer flow in a thin nanofluid film on a stretching sheet under the effects of suction and injection
title_fullStr Forced convection boundary layer flow in a thin nanofluid film on a stretching sheet under the effects of suction and injection
title_full_unstemmed Forced convection boundary layer flow in a thin nanofluid film on a stretching sheet under the effects of suction and injection
title_sort forced convection boundary layer flow in a thin nanofluid film on a stretching sheet under the effects of suction and injection
publisher Tamkang University
publishDate 2022
url http://eprints.utm.my/id/eprint/97202/1/SharidanShafie2022_ForcedConvectionBoundaryLayerFlow.pdf
http://eprints.utm.my/id/eprint/97202/
http://dx.doi.org/10.6180/jase.202206_25(3).0009
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score 13.18916