Numerically investigating the effects of slip and thermal convective on nanofluid boundary layer past a stretching/shrinking surface

The study is focusing on the steady boundary layer flow, heat and mass transfer passing through stretching/shrinking sheet immersed in nanofluid in the presence of the second order slip velocity and thermal convective at the boundary. The governing partial differential equations are converted into...

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Main Authors: Najib, N., Bachok, N., N. Rasedee, A. F., A. Salleh, S. N., W. Suhaimi, W. N.
Format: Article
Published: Lviv Polytechnic National University 2023
Online Access:http://psasir.upm.edu.my/id/eprint/109122/
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author Najib, N.
Bachok, N.
N. Rasedee, A. F.
A. Salleh, S. N.
W. Suhaimi, W. N.
author_facet Najib, N.
Bachok, N.
N. Rasedee, A. F.
A. Salleh, S. N.
W. Suhaimi, W. N.
author_sort Najib, N.
building UPM Institutional Repository
collection Online Access
description The study is focusing on the steady boundary layer flow, heat and mass transfer passing through stretching/shrinking sheet immersed in nanofluid in the presence of the second order slip velocity and thermal convective at the boundary. The governing partial differential equations are converted into ordinary differential equations by applying the similarity variables before being solved computationally using bvp4c function in Matlab software. The results of skin friction, heat transfer as well as mass transfer coefficient on the governing parameter such as the first order slip parameter, the second order slip parameter, Biot number, Brownian motion parameter and thermopherosis parameter are shown graphically in the discussion. The dual solutions exist in all range of stretching and shrinking parameter. Therefore the stability analysis is performed and concluded that the first solution is stable and physically relevant while the second solution acts in opposite way.
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format Article
id upm-109122
institution Universiti Putra Malaysia
institution_category Local University
last_indexed 2025-11-15T14:02:20Z
publishDate 2023
publisher Lviv Polytechnic National University
recordtype eprints
repository_type Digital Repository
spelling upm-1091222024-10-14T07:29:03Z http://psasir.upm.edu.my/id/eprint/109122/ Numerically investigating the effects of slip and thermal convective on nanofluid boundary layer past a stretching/shrinking surface Najib, N. Bachok, N. N. Rasedee, A. F. A. Salleh, S. N. W. Suhaimi, W. N. The study is focusing on the steady boundary layer flow, heat and mass transfer passing through stretching/shrinking sheet immersed in nanofluid in the presence of the second order slip velocity and thermal convective at the boundary. The governing partial differential equations are converted into ordinary differential equations by applying the similarity variables before being solved computationally using bvp4c function in Matlab software. The results of skin friction, heat transfer as well as mass transfer coefficient on the governing parameter such as the first order slip parameter, the second order slip parameter, Biot number, Brownian motion parameter and thermopherosis parameter are shown graphically in the discussion. The dual solutions exist in all range of stretching and shrinking parameter. Therefore the stability analysis is performed and concluded that the first solution is stable and physically relevant while the second solution acts in opposite way. Lviv Polytechnic National University 2023 Article PeerReviewed Najib, N. and Bachok, N. and N. Rasedee, A. F. and A. Salleh, S. N. and W. Suhaimi, W. N. (2023) Numerically investigating the effects of slip and thermal convective on nanofluid boundary layer past a stretching/shrinking surface. Mathematical Modeling and Computing, 10 (4). pp. 1239-1249. ISSN 2312-9794; ESSN: 2415-3788 https://science.lpnu.ua/mmc/all-volumes-and-issues/volume-10-number-4-2023/numerically-investigating-effects-slip-and 10.23939/mmc2023.04.1239
spellingShingle Najib, N.
Bachok, N.
N. Rasedee, A. F.
A. Salleh, S. N.
W. Suhaimi, W. N.
Numerically investigating the effects of slip and thermal convective on nanofluid boundary layer past a stretching/shrinking surface
title Numerically investigating the effects of slip and thermal convective on nanofluid boundary layer past a stretching/shrinking surface
title_full Numerically investigating the effects of slip and thermal convective on nanofluid boundary layer past a stretching/shrinking surface
title_fullStr Numerically investigating the effects of slip and thermal convective on nanofluid boundary layer past a stretching/shrinking surface
title_full_unstemmed Numerically investigating the effects of slip and thermal convective on nanofluid boundary layer past a stretching/shrinking surface
title_short Numerically investigating the effects of slip and thermal convective on nanofluid boundary layer past a stretching/shrinking surface
title_sort numerically investigating the effects of slip and thermal convective on nanofluid boundary layer past a stretching/shrinking surface
url http://psasir.upm.edu.my/id/eprint/109122/
http://psasir.upm.edu.my/id/eprint/109122/
http://psasir.upm.edu.my/id/eprint/109122/