A numerical study of electro-osmosis Williamson nanofluid flow in a permeable tapered channel

This paper aims to analyze the mathematical and theoretical scrutiny of non-Newtonian Williamson liquid on an asymmetry tapered channel with thermal and mass transportation. No slip boundary conditions for velocity, heat and concentration are kept on channel walls. Buongiorno model for thermal trans...

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Main Authors: S. Sakinder, T. Salahuddin
Format: Article
Language:English
Published: Elsevier 2023-10-01
Series:Alexandria Engineering Journal
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1110016823008530
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author S. Sakinder
T. Salahuddin
author_facet S. Sakinder
T. Salahuddin
author_sort S. Sakinder
collection DOAJ
description This paper aims to analyze the mathematical and theoretical scrutiny of non-Newtonian Williamson liquid on an asymmetry tapered channel with thermal and mass transportation. No slip boundary conditions for velocity, heat and concentration are kept on channel walls. Buongiorno model for thermal transport of nano-fluid is also incorporated. Flow in permeable surface is categorized via modified Darcy law. Current problem is formulated by incorporating distinct effects such as modified Darcy law, electro osmosis, heat generation and chemical reaction. RK-4 based shooting method has been utilized to evaluate the nonlinear equations. Graphical results are formulated to visualize the prominence of distinct parameters.
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spelling doaj.art-d5b25b661fa7481e99cc64b12d7d97f92023-10-15T04:37:01ZengElsevierAlexandria Engineering Journal1110-01682023-10-0181620625A numerical study of electro-osmosis Williamson nanofluid flow in a permeable tapered channelS. Sakinder0T. Salahuddin1Corresponding author.; Department of Mathematics, Mirpur University of Science and Technology, Mirpur 10250, Azad Kashmir, PakistanDepartment of Mathematics, Mirpur University of Science and Technology, Mirpur 10250, Azad Kashmir, PakistanThis paper aims to analyze the mathematical and theoretical scrutiny of non-Newtonian Williamson liquid on an asymmetry tapered channel with thermal and mass transportation. No slip boundary conditions for velocity, heat and concentration are kept on channel walls. Buongiorno model for thermal transport of nano-fluid is also incorporated. Flow in permeable surface is categorized via modified Darcy law. Current problem is formulated by incorporating distinct effects such as modified Darcy law, electro osmosis, heat generation and chemical reaction. RK-4 based shooting method has been utilized to evaluate the nonlinear equations. Graphical results are formulated to visualize the prominence of distinct parameters.http://www.sciencedirect.com/science/article/pii/S1110016823008530Williamson fluidTapered channelModified Darcy lawShooting method
spellingShingle S. Sakinder
T. Salahuddin
A numerical study of electro-osmosis Williamson nanofluid flow in a permeable tapered channel
Alexandria Engineering Journal
Williamson fluid
Tapered channel
Modified Darcy law
Shooting method
title A numerical study of electro-osmosis Williamson nanofluid flow in a permeable tapered channel
title_full A numerical study of electro-osmosis Williamson nanofluid flow in a permeable tapered channel
title_fullStr A numerical study of electro-osmosis Williamson nanofluid flow in a permeable tapered channel
title_full_unstemmed A numerical study of electro-osmosis Williamson nanofluid flow in a permeable tapered channel
title_short A numerical study of electro-osmosis Williamson nanofluid flow in a permeable tapered channel
title_sort numerical study of electro osmosis williamson nanofluid flow in a permeable tapered channel
topic Williamson fluid
Tapered channel
Modified Darcy law
Shooting method
url http://www.sciencedirect.com/science/article/pii/S1110016823008530
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