A Study on Non-Newtonian Transport Phenomena in Mhd Fluid Flow From a Vertical Cone With Navier Slip and Convective Heating

In the current study is to examine numerically the effects of presence of a radial magnetic field, slip and jump conditions on the steady two-dimensional free convective boundary layer flow over an external surface of a vertical cone for an electro-conductive polymer. A proper non-similarity transfo...

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Main Authors: Amanulla CH., Wakif Abderrahim, Boulahia Zoubair, Fazuruddin Syed, Noor Mohammed S.
Format: Article
Language:English
Published: De Gruyter 2019-01-01
Series:Nonlinear Engineering
Subjects:
Online Access:https://doi.org/10.1515/nleng-2018-0065
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spelling doaj-a4d1b9b467554f68a11f7365db2559262021-09-06T19:21:07ZengDe GruyterNonlinear Engineering2192-80102192-80292019-01-018153454510.1515/nleng-2018-0065nleng-2018-0065A Study on Non-Newtonian Transport Phenomena in Mhd Fluid Flow From a Vertical Cone With Navier Slip and Convective HeatingAmanulla CH.0Wakif Abderrahim1Boulahia Zoubair2Fazuruddin Syed3Noor Mohammed S.4Department of Mathematics, Jawaharlal Nehru Technological University, Anantapur, Anantapuramu-515002, IndiaHassan II University, Faculty of Sciences Aïn Chock, Laboratory of Mechanics, B.P.5366Mâarif, Casablanca, MoroccoHassan II University, Faculty of Sciences Aïn Chock, Laboratory of Mechanics, B.P.5366Mâarif, Casablanca, MoroccoDepartment of Mathematics, Sreenivasa Institute of Technology and Management Studies, Chittoor-517001, IndiaDepartment of Mathematics and Computer Science, Sanskrithi School of Engineering, Puttaparthi-515134, IndiaIn the current study is to examine numerically the effects of presence of a radial magnetic field, slip and jump conditions on the steady two-dimensional free convective boundary layer flow over an external surface of a vertical cone for an electro-conductive polymer. A proper non-similarity transformation simplifies the system of partial differential equations into a system of ordinary differential equations. The collocation formula in the MATLAB software then solves the system of non-similarity equations. The finding results show that, a weak elevation in temperature is accompanied with the increase in the Carreau fluid parameter, whereas a significant acceleration in the flow is computed near the cone surface. The study is relevant to smart coating transport phenomena.https://doi.org/10.1515/nleng-2018-0065magnetohydrodynamicscarreau fluidthermal convectionkeller-box methodnavier slipconvective heating
collection DOAJ
language English
format Article
sources DOAJ
author Amanulla CH.
Wakif Abderrahim
Boulahia Zoubair
Fazuruddin Syed
Noor Mohammed S.
spellingShingle Amanulla CH.
Wakif Abderrahim
Boulahia Zoubair
Fazuruddin Syed
Noor Mohammed S.
A Study on Non-Newtonian Transport Phenomena in Mhd Fluid Flow From a Vertical Cone With Navier Slip and Convective Heating
Nonlinear Engineering
magnetohydrodynamics
carreau fluid
thermal convection
keller-box method
navier slip
convective heating
author_facet Amanulla CH.
Wakif Abderrahim
Boulahia Zoubair
Fazuruddin Syed
Noor Mohammed S.
author_sort Amanulla CH.
title A Study on Non-Newtonian Transport Phenomena in Mhd Fluid Flow From a Vertical Cone With Navier Slip and Convective Heating
title_short A Study on Non-Newtonian Transport Phenomena in Mhd Fluid Flow From a Vertical Cone With Navier Slip and Convective Heating
title_full A Study on Non-Newtonian Transport Phenomena in Mhd Fluid Flow From a Vertical Cone With Navier Slip and Convective Heating
title_fullStr A Study on Non-Newtonian Transport Phenomena in Mhd Fluid Flow From a Vertical Cone With Navier Slip and Convective Heating
title_full_unstemmed A Study on Non-Newtonian Transport Phenomena in Mhd Fluid Flow From a Vertical Cone With Navier Slip and Convective Heating
title_sort study on non-newtonian transport phenomena in mhd fluid flow from a vertical cone with navier slip and convective heating
publisher De Gruyter
series Nonlinear Engineering
issn 2192-8010
2192-8029
publishDate 2019-01-01
description In the current study is to examine numerically the effects of presence of a radial magnetic field, slip and jump conditions on the steady two-dimensional free convective boundary layer flow over an external surface of a vertical cone for an electro-conductive polymer. A proper non-similarity transformation simplifies the system of partial differential equations into a system of ordinary differential equations. The collocation formula in the MATLAB software then solves the system of non-similarity equations. The finding results show that, a weak elevation in temperature is accompanied with the increase in the Carreau fluid parameter, whereas a significant acceleration in the flow is computed near the cone surface. The study is relevant to smart coating transport phenomena.
topic magnetohydrodynamics
carreau fluid
thermal convection
keller-box method
navier slip
convective heating
url https://doi.org/10.1515/nleng-2018-0065
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