Brownian and thermophoresis diffusion effects on magnetohydrodynamic Reiner–Philippoff nanofluid flow past a shrinking sheet

The aim of this paper is to highlight the output of the investigation on the MHD and radiative flow and thermal characteristics of a non-Newtonian Reiner–Philippoff nanofluid with Brownian and thermophoresis diffusion effects. The model studied is embedded in the Buongiorno theory. This unique model...

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Main Authors: Iskandar, Waini, Khairum, Hamzah, Najiyah, Safwa Khashi'ie, Nurul Amira, Zainal, Mohd Kasim, Abdul Rahman, Anuar, Ishak, Pop, Ioan
Format: Article
Language:English
Published: Elsevier B.V. 2023
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/37598/1/Brownian%20and%20thermophoresis%20diffusion%20effects%20on%20magnetohydrodynamic%20Reiner%E2%80%93Philippoff.pdf
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author Iskandar, Waini
Khairum, Hamzah
Najiyah, Safwa Khashi'ie
Nurul Amira, Zainal
Mohd Kasim, Abdul Rahman
Anuar, Ishak
Pop, Ioan
author_facet Iskandar, Waini
Khairum, Hamzah
Najiyah, Safwa Khashi'ie
Nurul Amira, Zainal
Mohd Kasim, Abdul Rahman
Anuar, Ishak
Pop, Ioan
author_sort Iskandar, Waini
collection UMP
description The aim of this paper is to highlight the output of the investigation on the MHD and radiative flow and thermal characteristics of a non-Newtonian Reiner–Philippoff nanofluid with Brownian and thermophoresis diffusion effects. The model studied is embedded in the Buongiorno theory. This unique model is designed to observe both shear thickening and shear thinning properties on that particular fluid with embedded Brownian and thermophoresis diffusion implications. The proposed model consists of continuity, momentum, energy, and concentration equations constructed using the theoretical assumptions and are reduced to a set of ordinary differential equations (ODEs) before solving it using the bvp4c function in MATLAB software. Two solutions are observed, and their physical significance is justified using the temporal stability analysis. From the standpoint of the Reiner–Philippoff fluid parameter, the skin friction coefficient as well as the heat and mass transfer rates are at maximum for the shear-thickening fluid followed by the Newtonian and shear-thinning fluids. The thermophoresis parameter is noticed to decline the heat and mass transfer rate whereas the Brownian motion parameter boosts the mass transfer rate but decreases the heat transfer rate.
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spelling UMPir375982023-07-13T02:56:45Z http://umpir.ump.edu.my/id/eprint/37598/ Brownian and thermophoresis diffusion effects on magnetohydrodynamic Reiner–Philippoff nanofluid flow past a shrinking sheet Iskandar, Waini Khairum, Hamzah Najiyah, Safwa Khashi'ie Nurul Amira, Zainal Mohd Kasim, Abdul Rahman Anuar, Ishak Pop, Ioan Q Science (General) QA Mathematics TA Engineering (General). Civil engineering (General) The aim of this paper is to highlight the output of the investigation on the MHD and radiative flow and thermal characteristics of a non-Newtonian Reiner–Philippoff nanofluid with Brownian and thermophoresis diffusion effects. The model studied is embedded in the Buongiorno theory. This unique model is designed to observe both shear thickening and shear thinning properties on that particular fluid with embedded Brownian and thermophoresis diffusion implications. The proposed model consists of continuity, momentum, energy, and concentration equations constructed using the theoretical assumptions and are reduced to a set of ordinary differential equations (ODEs) before solving it using the bvp4c function in MATLAB software. Two solutions are observed, and their physical significance is justified using the temporal stability analysis. From the standpoint of the Reiner–Philippoff fluid parameter, the skin friction coefficient as well as the heat and mass transfer rates are at maximum for the shear-thickening fluid followed by the Newtonian and shear-thinning fluids. The thermophoresis parameter is noticed to decline the heat and mass transfer rate whereas the Brownian motion parameter boosts the mass transfer rate but decreases the heat transfer rate. Elsevier B.V. 2023-03-15 Article PeerReviewed pdf en cc_by_nc_nd_4 http://umpir.ump.edu.my/id/eprint/37598/1/Brownian%20and%20thermophoresis%20diffusion%20effects%20on%20magnetohydrodynamic%20Reiner%E2%80%93Philippoff.pdf Iskandar, Waini and Khairum, Hamzah and Najiyah, Safwa Khashi'ie and Nurul Amira, Zainal and Mohd Kasim, Abdul Rahman and Anuar, Ishak and Pop, Ioan (2023) Brownian and thermophoresis diffusion effects on magnetohydrodynamic Reiner–Philippoff nanofluid flow past a shrinking sheet. Alexandria Engineering Journal, 67. pp. 183-192. ISSN 1110-0168. (Published) https://doi.org/10.1016/j.aej.2022.12.056 https://doi.org/10.1016/j.aej.2022.12.056
spellingShingle Q Science (General)
QA Mathematics
TA Engineering (General). Civil engineering (General)
Iskandar, Waini
Khairum, Hamzah
Najiyah, Safwa Khashi'ie
Nurul Amira, Zainal
Mohd Kasim, Abdul Rahman
Anuar, Ishak
Pop, Ioan
Brownian and thermophoresis diffusion effects on magnetohydrodynamic Reiner–Philippoff nanofluid flow past a shrinking sheet
title Brownian and thermophoresis diffusion effects on magnetohydrodynamic Reiner–Philippoff nanofluid flow past a shrinking sheet
title_full Brownian and thermophoresis diffusion effects on magnetohydrodynamic Reiner–Philippoff nanofluid flow past a shrinking sheet
title_fullStr Brownian and thermophoresis diffusion effects on magnetohydrodynamic Reiner–Philippoff nanofluid flow past a shrinking sheet
title_full_unstemmed Brownian and thermophoresis diffusion effects on magnetohydrodynamic Reiner–Philippoff nanofluid flow past a shrinking sheet
title_short Brownian and thermophoresis diffusion effects on magnetohydrodynamic Reiner–Philippoff nanofluid flow past a shrinking sheet
title_sort brownian and thermophoresis diffusion effects on magnetohydrodynamic reiner philippoff nanofluid flow past a shrinking sheet
topic Q Science (General)
QA Mathematics
TA Engineering (General). Civil engineering (General)
url http://umpir.ump.edu.my/id/eprint/37598/1/Brownian%20and%20thermophoresis%20diffusion%20effects%20on%20magnetohydrodynamic%20Reiner%E2%80%93Philippoff.pdf
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