Natural convection and thermal radiation influence on nanofluid flow over a stretching cylinder in a porous medium with viscous dissipation

The purpose of the present work is to examine the collective influence of thermal radiation and convection flow of Cu-water nanofluid due to a stretching cylinder in a porous medium along with viscous dissipation and slip boundary conditions. The governing non-linear ODEs and auxiliary boundary cond...

Full description

Bibliographic Details
Main Authors: Alok Kumar Pandey, Manoj Kumar
Format: Article
Language:English
Published: Elsevier 2017-03-01
Series:Alexandria Engineering Journal
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1110016816302460
id doaj-212f0216c9554ccf8b764d6333cceb94
record_format Article
spelling doaj-212f0216c9554ccf8b764d6333cceb942021-06-02T01:23:07ZengElsevierAlexandria Engineering Journal1110-01682017-03-01561556210.1016/j.aej.2016.08.035Natural convection and thermal radiation influence on nanofluid flow over a stretching cylinder in a porous medium with viscous dissipationAlok Kumar PandeyManoj KumarThe purpose of the present work is to examine the collective influence of thermal radiation and convection flow of Cu-water nanofluid due to a stretching cylinder in a porous medium along with viscous dissipation and slip boundary conditions. The governing non-linear ODEs and auxiliary boundary conditions those obtained by applying assisting similarity transformations have been handled numerically with shooting scheme through Runge-Kutta-integration procedure of fourth-fifth order. The non-dimensional velocity and temperature distribution are designed and also skin friction coefficient as well as heat transfer rate are tabulated for various values of relatable parameters. The results explain that Nusselt number depreciates with boost in radiation parameter, thermal slip parameter and Eckert number. Moreover, it is accelerated with increase in velocity slip parameter and natural convection parameter. The results are distinguished via published ones and excellent accord has been detected.http://www.sciencedirect.com/science/article/pii/S1110016816302460NanofluidNatural convectionSlip boundary conditionsStretching cylinderThermal radiationViscous dissipation
collection DOAJ
language English
format Article
sources DOAJ
author Alok Kumar Pandey
Manoj Kumar
spellingShingle Alok Kumar Pandey
Manoj Kumar
Natural convection and thermal radiation influence on nanofluid flow over a stretching cylinder in a porous medium with viscous dissipation
Alexandria Engineering Journal
Nanofluid
Natural convection
Slip boundary conditions
Stretching cylinder
Thermal radiation
Viscous dissipation
author_facet Alok Kumar Pandey
Manoj Kumar
author_sort Alok Kumar Pandey
title Natural convection and thermal radiation influence on nanofluid flow over a stretching cylinder in a porous medium with viscous dissipation
title_short Natural convection and thermal radiation influence on nanofluid flow over a stretching cylinder in a porous medium with viscous dissipation
title_full Natural convection and thermal radiation influence on nanofluid flow over a stretching cylinder in a porous medium with viscous dissipation
title_fullStr Natural convection and thermal radiation influence on nanofluid flow over a stretching cylinder in a porous medium with viscous dissipation
title_full_unstemmed Natural convection and thermal radiation influence on nanofluid flow over a stretching cylinder in a porous medium with viscous dissipation
title_sort natural convection and thermal radiation influence on nanofluid flow over a stretching cylinder in a porous medium with viscous dissipation
publisher Elsevier
series Alexandria Engineering Journal
issn 1110-0168
publishDate 2017-03-01
description The purpose of the present work is to examine the collective influence of thermal radiation and convection flow of Cu-water nanofluid due to a stretching cylinder in a porous medium along with viscous dissipation and slip boundary conditions. The governing non-linear ODEs and auxiliary boundary conditions those obtained by applying assisting similarity transformations have been handled numerically with shooting scheme through Runge-Kutta-integration procedure of fourth-fifth order. The non-dimensional velocity and temperature distribution are designed and also skin friction coefficient as well as heat transfer rate are tabulated for various values of relatable parameters. The results explain that Nusselt number depreciates with boost in radiation parameter, thermal slip parameter and Eckert number. Moreover, it is accelerated with increase in velocity slip parameter and natural convection parameter. The results are distinguished via published ones and excellent accord has been detected.
topic Nanofluid
Natural convection
Slip boundary conditions
Stretching cylinder
Thermal radiation
Viscous dissipation
url http://www.sciencedirect.com/science/article/pii/S1110016816302460
work_keys_str_mv AT alokkumarpandey naturalconvectionandthermalradiationinfluenceonnanofluidflowoverastretchingcylinderinaporousmediumwithviscousdissipation
AT manojkumar naturalconvectionandthermalradiationinfluenceonnanofluidflowoverastretchingcylinderinaporousmediumwithviscousdissipation
_version_ 1721409591100571648