Inspection of viscoelastic Ag+Cu+Fe3O4+Al2O3/kerosene oil tetra-hybrid nanofluid flow across a stretchable rotating disk with exponentially varying viscosity

Fluid flow through rotating disks plays a critical role in various applications across daily life, engineering, and industry, including rotor-stator systems, ocean circulation models, and medical equipment. This study investigates the potential of a novel fluid type – tetra-hybrid nanofluids – in su...

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Main Authors: Bhagyashri Patgiri, Ashish Paul
Format: Article
Language:English
Published: Taylor & Francis Group 2024-12-01
Series:Journal of Taibah University for Science
Subjects:
Online Access:https://www.tandfonline.com/doi/10.1080/16583655.2024.2336327
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author Bhagyashri Patgiri
Ashish Paul
author_facet Bhagyashri Patgiri
Ashish Paul
author_sort Bhagyashri Patgiri
collection DOAJ
description Fluid flow through rotating disks plays a critical role in various applications across daily life, engineering, and industry, including rotor-stator systems, ocean circulation models, and medical equipment. This study investigates the potential of a novel fluid type – tetra-hybrid nanofluids – in such applications. We explore the influence of factors like variable viscosity, thermal radiation, suction/injection, thermophoresis, nanoparticle shape, Deborah number, and Brownian motion on the flow characteristics of a viscoelastic tetra-hybrid nanofluid over a stretchable rotating disk. Employing the bvp4c numerical scheme, we analyze the governing dimensionless equations. The results demonstrate that the tetra-hybrid nanofluid exhibits significantly improved heat transfer rates compared to conventional nanofluids, hybrid nanofluids and tri-hybrid nanofluids with enhancements of 7.43%, 6.27%, and 5.35%, respectively. Additionally, the study reveals that lamina-shaped nanoparticles offer higher heat transport performance compared to spherical and blade-shaped nanoparticles.
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spelling doaj.art-bb2c1a333f5b4c99a3e5065c87b16ee42024-04-03T17:53:24ZengTaylor & Francis GroupJournal of Taibah University for Science1658-36552024-12-0118110.1080/16583655.2024.2336327Inspection of viscoelastic Ag+Cu+Fe3O4+Al2O3/kerosene oil tetra-hybrid nanofluid flow across a stretchable rotating disk with exponentially varying viscosityBhagyashri Patgiri0Ashish Paul1Department of Mathematics, Cotton University, Guwahati, IndiaDepartment of Mathematics, Cotton University, Guwahati, IndiaFluid flow through rotating disks plays a critical role in various applications across daily life, engineering, and industry, including rotor-stator systems, ocean circulation models, and medical equipment. This study investigates the potential of a novel fluid type – tetra-hybrid nanofluids – in such applications. We explore the influence of factors like variable viscosity, thermal radiation, suction/injection, thermophoresis, nanoparticle shape, Deborah number, and Brownian motion on the flow characteristics of a viscoelastic tetra-hybrid nanofluid over a stretchable rotating disk. Employing the bvp4c numerical scheme, we analyze the governing dimensionless equations. The results demonstrate that the tetra-hybrid nanofluid exhibits significantly improved heat transfer rates compared to conventional nanofluids, hybrid nanofluids and tri-hybrid nanofluids with enhancements of 7.43%, 6.27%, and 5.35%, respectively. Additionally, the study reveals that lamina-shaped nanoparticles offer higher heat transport performance compared to spherical and blade-shaped nanoparticles.https://www.tandfonline.com/doi/10.1080/16583655.2024.2336327Exponentially varying viscosityMaxwell fluidshape factorthermophoresisBrownian motion
spellingShingle Bhagyashri Patgiri
Ashish Paul
Inspection of viscoelastic Ag+Cu+Fe3O4+Al2O3/kerosene oil tetra-hybrid nanofluid flow across a stretchable rotating disk with exponentially varying viscosity
Journal of Taibah University for Science
Exponentially varying viscosity
Maxwell fluid
shape factor
thermophoresis
Brownian motion
title Inspection of viscoelastic Ag+Cu+Fe3O4+Al2O3/kerosene oil tetra-hybrid nanofluid flow across a stretchable rotating disk with exponentially varying viscosity
title_full Inspection of viscoelastic Ag+Cu+Fe3O4+Al2O3/kerosene oil tetra-hybrid nanofluid flow across a stretchable rotating disk with exponentially varying viscosity
title_fullStr Inspection of viscoelastic Ag+Cu+Fe3O4+Al2O3/kerosene oil tetra-hybrid nanofluid flow across a stretchable rotating disk with exponentially varying viscosity
title_full_unstemmed Inspection of viscoelastic Ag+Cu+Fe3O4+Al2O3/kerosene oil tetra-hybrid nanofluid flow across a stretchable rotating disk with exponentially varying viscosity
title_short Inspection of viscoelastic Ag+Cu+Fe3O4+Al2O3/kerosene oil tetra-hybrid nanofluid flow across a stretchable rotating disk with exponentially varying viscosity
title_sort inspection of viscoelastic ag cu fe3o4 al2o3 kerosene oil tetra hybrid nanofluid flow across a stretchable rotating disk with exponentially varying viscosity
topic Exponentially varying viscosity
Maxwell fluid
shape factor
thermophoresis
Brownian motion
url https://www.tandfonline.com/doi/10.1080/16583655.2024.2336327
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AT ashishpaul inspectionofviscoelasticagcufe3o4al2o3keroseneoiltetrahybridnanofluidflowacrossastretchablerotatingdiskwithexponentiallyvaryingviscosity