MHD flow of dusty nanofluid over a stretching surface with volume fraction of dust particles

In this study we analyzed the momentum and heat transfer behavior of MHD nanofluid embedded with conducting dust particles past a stretching surface in the presence of volume fraction of dust particles. The governing equations of the flow and heat transfer are transformed into nonlinear ordinary dif...

Szczegółowa specyfikacja

Opis bibliograficzny
Główni autorzy: Sandeep Naramgari, C. Sulochana
Format: Artykuł
Język:English
Wydane: Elsevier 2016-06-01
Seria:Ain Shams Engineering Journal
Hasła przedmiotowe:
Dostęp online:http://www.sciencedirect.com/science/article/pii/S2090447915000908
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author Sandeep Naramgari
C. Sulochana
author_facet Sandeep Naramgari
C. Sulochana
author_sort Sandeep Naramgari
collection DOAJ
description In this study we analyzed the momentum and heat transfer behavior of MHD nanofluid embedded with conducting dust particles past a stretching surface in the presence of volume fraction of dust particles. The governing equations of the flow and heat transfer are transformed into nonlinear ordinary differential equations by using similarity transformation and then solved numerically using Runge–Kutta based shooting technique. The effect of non-dimensional governing parameters on velocity and temperature profiles of the flow are discussed and presented through graphs. Additionally friction factor and the Nusselt number have also been computed. Under some special conditions, numerical results obtained by the present study were compared with the existed studies. The result of the present study proves to be highly satisfactory. The results indicate that an increase in the interaction between the fluid and particle phase enhances the heat transfer rate and reduces the friction factor.
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spelling doaj.art-225e4057a36c44c79097c9c1a0c37f1c2022-12-21T21:26:30ZengElsevierAin Shams Engineering Journal2090-44792016-06-017270971610.1016/j.asej.2015.05.015MHD flow of dusty nanofluid over a stretching surface with volume fraction of dust particlesSandeep NaramgariC. SulochanaIn this study we analyzed the momentum and heat transfer behavior of MHD nanofluid embedded with conducting dust particles past a stretching surface in the presence of volume fraction of dust particles. The governing equations of the flow and heat transfer are transformed into nonlinear ordinary differential equations by using similarity transformation and then solved numerically using Runge–Kutta based shooting technique. The effect of non-dimensional governing parameters on velocity and temperature profiles of the flow are discussed and presented through graphs. Additionally friction factor and the Nusselt number have also been computed. Under some special conditions, numerical results obtained by the present study were compared with the existed studies. The result of the present study proves to be highly satisfactory. The results indicate that an increase in the interaction between the fluid and particle phase enhances the heat transfer rate and reduces the friction factor.http://www.sciencedirect.com/science/article/pii/S2090447915000908MHDDust particlesNanofluidStretching sheetVolume fractionConvection
spellingShingle Sandeep Naramgari
C. Sulochana
MHD flow of dusty nanofluid over a stretching surface with volume fraction of dust particles
Ain Shams Engineering Journal
MHD
Dust particles
Nanofluid
Stretching sheet
Volume fraction
Convection
title MHD flow of dusty nanofluid over a stretching surface with volume fraction of dust particles
title_full MHD flow of dusty nanofluid over a stretching surface with volume fraction of dust particles
title_fullStr MHD flow of dusty nanofluid over a stretching surface with volume fraction of dust particles
title_full_unstemmed MHD flow of dusty nanofluid over a stretching surface with volume fraction of dust particles
title_short MHD flow of dusty nanofluid over a stretching surface with volume fraction of dust particles
title_sort mhd flow of dusty nanofluid over a stretching surface with volume fraction of dust particles
topic MHD
Dust particles
Nanofluid
Stretching sheet
Volume fraction
Convection
url http://www.sciencedirect.com/science/article/pii/S2090447915000908
work_keys_str_mv AT sandeepnaramgari mhdflowofdustynanofluidoverastretchingsurfacewithvolumefractionofdustparticles
AT csulochana mhdflowofdustynanofluidoverastretchingsurfacewithvolumefractionofdustparticles