Stagnation point flow of a water-based graphene-oxide over a stretching/shrinking sheet under an induced magnetic field with homogeneous-heterogeneous chemical reaction

Water has received a great deal of attention as lubrication for production due to its efficiency, affordable, and friendly to the environment. GO (graphene oxide) ingredients have the capability to upsurge the efficiency of water lubrication owing to theire extraordinary machine-driven/mechanical pr...

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Main Authors: Zaib, Aurang, Khan, Umair, Ishak, Anuar, Waini, Iskandar, Pop, Ioan, Elattar, Samia, M. Abed, Ahmed
Format: Article
Language:English
Published: Elsevier B.V. 2023
Online Access:http://eprints.utem.edu.my/id/eprint/27769/2/022501008202417154994.pdf
http://eprints.utem.edu.my/id/eprint/27769/
https://www.sciencedirect.com/science/article/pii/S0304885322011726
https://doi.org/10.1016/j.jmmm.2022.170287
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spelling my.utem.eprints.277692024-10-07T14:37:01Z http://eprints.utem.edu.my/id/eprint/27769/ Stagnation point flow of a water-based graphene-oxide over a stretching/shrinking sheet under an induced magnetic field with homogeneous-heterogeneous chemical reaction Zaib, Aurang Khan, Umair Ishak, Anuar Waini, Iskandar Pop, Ioan Elattar, Samia M. Abed, Ahmed Water has received a great deal of attention as lubrication for production due to its efficiency, affordable, and friendly to the environment. GO (graphene oxide) ingredients have the capability to upsurge the efficiency of water lubrication owing to theire extraordinary machine-driven/mechanical properties, water dispensability, and variety of practical uses. With such a motivation, it is anticipated the effect of the induced magnetic field (IMF) on the fluid flow close to a standstill point created by a stretching/shrinking sheet with a homogeneous-heterogeneous chemical reaction and dispensed with water-based GO nanoparticles. The leading governing partial differential equations (PDEs) of the problem are converted into ordinary differential equations (ODEs) via employing similarity variables. After that, the resulting equations are worked out numerically with help of the bvp4c (boundary-value problem of fourth-order) solver. Figures are employed as representations to demonstrate the stimulation of pertinent parameters such as the reciprocal magnetic parameter, the magnetic parameter, the Prandtl number, the Schmidt number, the ratio of the diffusion coefficients, radiation, nanoparticle volume fraction, heat source/sink, and heterogeneous reaction parameter on the profile of induced magnetic, velocity, temperature, concentration, rate of heat transfer, and friction factor. It is noted that both the gradients are enhanced by the nanoparticle fraction volume. Moreover, dual solutions can be established in the limited values of stretching/shrinking parameter. Moreover, the shear stress upsurges by almost 4.18% and 0.52% for the upper and lower solution branches with higher values of the solid nanoparticles volume fraction, respectively, whilst it shrinkages up to 7.56% in the upper branch outcome owing to the higher influence of the magnetic parameter but increases by almost 14.56% for the lower branch solution. Elsevier B.V. 2023-01 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/27769/2/022501008202417154994.pdf Zaib, Aurang and Khan, Umair and Ishak, Anuar and Waini, Iskandar and Pop, Ioan and Elattar, Samia and M. Abed, Ahmed (2023) Stagnation point flow of a water-based graphene-oxide over a stretching/shrinking sheet under an induced magnetic field with homogeneous-heterogeneous chemical reaction. Journal of Magnetism and Magnetic Materials, 565. pp. 1-11. ISSN 0304-8853 https://www.sciencedirect.com/science/article/pii/S0304885322011726 https://doi.org/10.1016/j.jmmm.2022.170287
institution Universiti Teknikal Malaysia Melaka
building UTEM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknikal Malaysia Melaka
content_source UTEM Institutional Repository
url_provider http://eprints.utem.edu.my/
language English
description Water has received a great deal of attention as lubrication for production due to its efficiency, affordable, and friendly to the environment. GO (graphene oxide) ingredients have the capability to upsurge the efficiency of water lubrication owing to theire extraordinary machine-driven/mechanical properties, water dispensability, and variety of practical uses. With such a motivation, it is anticipated the effect of the induced magnetic field (IMF) on the fluid flow close to a standstill point created by a stretching/shrinking sheet with a homogeneous-heterogeneous chemical reaction and dispensed with water-based GO nanoparticles. The leading governing partial differential equations (PDEs) of the problem are converted into ordinary differential equations (ODEs) via employing similarity variables. After that, the resulting equations are worked out numerically with help of the bvp4c (boundary-value problem of fourth-order) solver. Figures are employed as representations to demonstrate the stimulation of pertinent parameters such as the reciprocal magnetic parameter, the magnetic parameter, the Prandtl number, the Schmidt number, the ratio of the diffusion coefficients, radiation, nanoparticle volume fraction, heat source/sink, and heterogeneous reaction parameter on the profile of induced magnetic, velocity, temperature, concentration, rate of heat transfer, and friction factor. It is noted that both the gradients are enhanced by the nanoparticle fraction volume. Moreover, dual solutions can be established in the limited values of stretching/shrinking parameter. Moreover, the shear stress upsurges by almost 4.18% and 0.52% for the upper and lower solution branches with higher values of the solid nanoparticles volume fraction, respectively, whilst it shrinkages up to 7.56% in the upper branch outcome owing to the higher influence of the magnetic parameter but increases by almost 14.56% for the lower branch solution.
format Article
author Zaib, Aurang
Khan, Umair
Ishak, Anuar
Waini, Iskandar
Pop, Ioan
Elattar, Samia
M. Abed, Ahmed
spellingShingle Zaib, Aurang
Khan, Umair
Ishak, Anuar
Waini, Iskandar
Pop, Ioan
Elattar, Samia
M. Abed, Ahmed
Stagnation point flow of a water-based graphene-oxide over a stretching/shrinking sheet under an induced magnetic field with homogeneous-heterogeneous chemical reaction
author_facet Zaib, Aurang
Khan, Umair
Ishak, Anuar
Waini, Iskandar
Pop, Ioan
Elattar, Samia
M. Abed, Ahmed
author_sort Zaib, Aurang
title Stagnation point flow of a water-based graphene-oxide over a stretching/shrinking sheet under an induced magnetic field with homogeneous-heterogeneous chemical reaction
title_short Stagnation point flow of a water-based graphene-oxide over a stretching/shrinking sheet under an induced magnetic field with homogeneous-heterogeneous chemical reaction
title_full Stagnation point flow of a water-based graphene-oxide over a stretching/shrinking sheet under an induced magnetic field with homogeneous-heterogeneous chemical reaction
title_fullStr Stagnation point flow of a water-based graphene-oxide over a stretching/shrinking sheet under an induced magnetic field with homogeneous-heterogeneous chemical reaction
title_full_unstemmed Stagnation point flow of a water-based graphene-oxide over a stretching/shrinking sheet under an induced magnetic field with homogeneous-heterogeneous chemical reaction
title_sort stagnation point flow of a water-based graphene-oxide over a stretching/shrinking sheet under an induced magnetic field with homogeneous-heterogeneous chemical reaction
publisher Elsevier B.V.
publishDate 2023
url http://eprints.utem.edu.my/id/eprint/27769/2/022501008202417154994.pdf
http://eprints.utem.edu.my/id/eprint/27769/
https://www.sciencedirect.com/science/article/pii/S0304885322011726
https://doi.org/10.1016/j.jmmm.2022.170287
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score 13.211869