3D nanofluid flow over exponentially expanding surface of Oldroyd-B fluid

Fluid motion is caused by the surface stretching, the temperature difference or the concentration difference etc. In this study, we will focus exclusively on the 3D nanofluid flow due to expanding surface of Oldroyd-B fluid which is extended in two directions. The flow over expanding surface has sev...

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Autores principales: Aamir Ali, Javairia Akhtar, H.J. Anjum, M. Awais, Zahir Shah, Poom Kumam
Formato: article
Lenguaje:EN
Publicado: Elsevier 2021
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Acceso en línea:https://doaj.org/article/63e5be9b49c8473b8024fe55d1226b8b
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spelling oai:doaj.org-article:63e5be9b49c8473b8024fe55d1226b8b2021-11-22T04:20:39Z3D nanofluid flow over exponentially expanding surface of Oldroyd-B fluid2090-447910.1016/j.asej.2021.01.026https://doaj.org/article/63e5be9b49c8473b8024fe55d1226b8b2021-12-01T00:00:00Zhttp://www.sciencedirect.com/science/article/pii/S2090447921001155https://doaj.org/toc/2090-4479Fluid motion is caused by the surface stretching, the temperature difference or the concentration difference etc. In this study, we will focus exclusively on the 3D nanofluid flow due to expanding surface of Oldroyd-B fluid which is extended in two directions. The flow over expanding surface has several applications in engineering and industrial processes for instance plastic sheet extrusion, hot rolling, paper processing, wire drawing, plastic films painting, and fiber glass etc. In current investigation, we have discussed the nanofluid flow over an expanding surface for Oldroyd-B fluid. It is possible to use nanofluids to enhance the fluid’s thermal conductivity. The equations that governs the flow are converted into nonlinear coupled ODE’s. The problem’s series solution was found using the method of homotopy analysis. Effects of Deborah number, thermophoretic and Brownian diffusion parameters, Prandtl and Schmidt numbers on the flow field are explored and discussed graphically. The relaxation/retardation times are noted to have contrasting effects on fluid velocity. Further, the diffusion parameter of nanoparticles enhance the temperature and nanofluid concentration.Aamir AliJavairia AkhtarH.J. AnjumM. AwaisZahir ShahPoom KumamElsevierarticleOldroyd-B fluidExponential stretchingNanofluidHAMEngineering (General). Civil engineering (General)TA1-2040ENAin Shams Engineering Journal, Vol 12, Iss 4, Pp 3939-3946 (2021)
institution DOAJ
collection DOAJ
language EN
topic Oldroyd-B fluid
Exponential stretching
Nanofluid
HAM
Engineering (General). Civil engineering (General)
TA1-2040
spellingShingle Oldroyd-B fluid
Exponential stretching
Nanofluid
HAM
Engineering (General). Civil engineering (General)
TA1-2040
Aamir Ali
Javairia Akhtar
H.J. Anjum
M. Awais
Zahir Shah
Poom Kumam
3D nanofluid flow over exponentially expanding surface of Oldroyd-B fluid
description Fluid motion is caused by the surface stretching, the temperature difference or the concentration difference etc. In this study, we will focus exclusively on the 3D nanofluid flow due to expanding surface of Oldroyd-B fluid which is extended in two directions. The flow over expanding surface has several applications in engineering and industrial processes for instance plastic sheet extrusion, hot rolling, paper processing, wire drawing, plastic films painting, and fiber glass etc. In current investigation, we have discussed the nanofluid flow over an expanding surface for Oldroyd-B fluid. It is possible to use nanofluids to enhance the fluid’s thermal conductivity. The equations that governs the flow are converted into nonlinear coupled ODE’s. The problem’s series solution was found using the method of homotopy analysis. Effects of Deborah number, thermophoretic and Brownian diffusion parameters, Prandtl and Schmidt numbers on the flow field are explored and discussed graphically. The relaxation/retardation times are noted to have contrasting effects on fluid velocity. Further, the diffusion parameter of nanoparticles enhance the temperature and nanofluid concentration.
format article
author Aamir Ali
Javairia Akhtar
H.J. Anjum
M. Awais
Zahir Shah
Poom Kumam
author_facet Aamir Ali
Javairia Akhtar
H.J. Anjum
M. Awais
Zahir Shah
Poom Kumam
author_sort Aamir Ali
title 3D nanofluid flow over exponentially expanding surface of Oldroyd-B fluid
title_short 3D nanofluid flow over exponentially expanding surface of Oldroyd-B fluid
title_full 3D nanofluid flow over exponentially expanding surface of Oldroyd-B fluid
title_fullStr 3D nanofluid flow over exponentially expanding surface of Oldroyd-B fluid
title_full_unstemmed 3D nanofluid flow over exponentially expanding surface of Oldroyd-B fluid
title_sort 3d nanofluid flow over exponentially expanding surface of oldroyd-b fluid
publisher Elsevier
publishDate 2021
url https://doaj.org/article/63e5be9b49c8473b8024fe55d1226b8b
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