Eyring-Powell Hybrid Nanofluid with Radiative Heat Flux: Case Over a Shrinking Sheet
This study investigates the radiative heat flux effect on Eyring-Powell hybrid nanofluid together with analysis thermal passing towards a shrinking sheet containing nanoparticles. The proposed mathematical model respected to the boundary condition is converted to the similarity equations by adopting...
Published in: | Journal of Advanced Research in Fluid Mechanics and Thermal Sciences |
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Semarak Ilmu Publishing
2023
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2-s2.0-85180923469 Aljabali A.; Kasim A.R.M.; Khashi’ie N.S.; Waini I.; Ariffin N.A.N. Eyring-Powell Hybrid Nanofluid with Radiative Heat Flux: Case Over a Shrinking Sheet 2023 Journal of Advanced Research in Fluid Mechanics and Thermal Sciences 111 1 10.37934/arfmts.111.1.109121 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85180923469&doi=10.37934%2farfmts.111.1.109121&partnerID=40&md5=c401d59f410ceee3a2048a16aa8dbd46 This study investigates the radiative heat flux effect on Eyring-Powell hybrid nanofluid together with analysis thermal passing towards a shrinking sheet containing nanoparticles. The proposed mathematical model respected to the boundary condition is converted to the similarity equations by adopting the suitable transformations. In order to reduce the complexity of model, the similarity equations are then computed by applying the bvp4c function in MATLAB software. Outcomes reveal the thermal performance is upgraded in dispersing the nanoparticle to the base fluid, and it is marked under hybrid nanoparticles consideration. The presence of Eyring-Powell, radiation and shrinking parameters are the controller parameter in regulatory the sheer stress and thermal performance of the fluid. Ag − MgO. © 2023, Semarak Ilmu Publishing. All rights reserved. Semarak Ilmu Publishing 22897879 English Article All Open Access; Hybrid Gold Open Access |
author |
Aljabali A.; Kasim A.R.M.; Khashi’ie N.S.; Waini I.; Ariffin N.A.N. |
spellingShingle |
Aljabali A.; Kasim A.R.M.; Khashi’ie N.S.; Waini I.; Ariffin N.A.N. Eyring-Powell Hybrid Nanofluid with Radiative Heat Flux: Case Over a Shrinking Sheet |
author_facet |
Aljabali A.; Kasim A.R.M.; Khashi’ie N.S.; Waini I.; Ariffin N.A.N. |
author_sort |
Aljabali A.; Kasim A.R.M.; Khashi’ie N.S.; Waini I.; Ariffin N.A.N. |
title |
Eyring-Powell Hybrid Nanofluid with Radiative Heat Flux: Case Over a Shrinking Sheet |
title_short |
Eyring-Powell Hybrid Nanofluid with Radiative Heat Flux: Case Over a Shrinking Sheet |
title_full |
Eyring-Powell Hybrid Nanofluid with Radiative Heat Flux: Case Over a Shrinking Sheet |
title_fullStr |
Eyring-Powell Hybrid Nanofluid with Radiative Heat Flux: Case Over a Shrinking Sheet |
title_full_unstemmed |
Eyring-Powell Hybrid Nanofluid with Radiative Heat Flux: Case Over a Shrinking Sheet |
title_sort |
Eyring-Powell Hybrid Nanofluid with Radiative Heat Flux: Case Over a Shrinking Sheet |
publishDate |
2023 |
container_title |
Journal of Advanced Research in Fluid Mechanics and Thermal Sciences |
container_volume |
111 |
container_issue |
1 |
doi_str_mv |
10.37934/arfmts.111.1.109121 |
url |
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85180923469&doi=10.37934%2farfmts.111.1.109121&partnerID=40&md5=c401d59f410ceee3a2048a16aa8dbd46 |
description |
This study investigates the radiative heat flux effect on Eyring-Powell hybrid nanofluid together with analysis thermal passing towards a shrinking sheet containing nanoparticles. The proposed mathematical model respected to the boundary condition is converted to the similarity equations by adopting the suitable transformations. In order to reduce the complexity of model, the similarity equations are then computed by applying the bvp4c function in MATLAB software. Outcomes reveal the thermal performance is upgraded in dispersing the nanoparticle to the base fluid, and it is marked under hybrid nanoparticles consideration. The presence of Eyring-Powell, radiation and shrinking parameters are the controller parameter in regulatory the sheer stress and thermal performance of the fluid. Ag − MgO. © 2023, Semarak Ilmu Publishing. All rights reserved. |
publisher |
Semarak Ilmu Publishing |
issn |
22897879 |
language |
English |
format |
Article |
accesstype |
All Open Access; Hybrid Gold Open Access |
record_format |
scopus |
collection |
Scopus |
_version_ |
1809677579582439424 |