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Effects of radiation on mixed convection stagnation-point flow of MHD third-grade nanofluid

Author:
بیژن گل افشان
,
اصغر برادران رحیمی
,
Bijan Golafshan
,
Asgar Bradaran Rahimi
Year
: 2019
Abstract: This paper considers the problem of the two-dimensional mixed convection stagnation-point flow of a magnetohydrodynamic non-Newtonian nanofluid bounded by a vertical stretching sheet. Convective surface boundary and zero surface nanoparticle mass flux conditions are employed. The effects of buoyancy, radiation, Brownian motion, thermophoresis, and viscous dissipation are taken into account. The stretching velocity is assumed to vary linearly with the distance from the stagnation point. The fluid is electrically conducted with uniform magnetic field, and the work done due to deformation is taken into consideration. The three-coupled partial differential boundary layer equations are reduced to ordinary differential equations by using proper similarity transformations. Analytical solution by homotopy analysis method is obtained. Effects of different physical parameters on the dynamics of the problem are analyzed and discussed.
URI: https://libsearch.um.ac.ir:443/fum/handle/fum/3363594
Keyword(s): Nanofluid-radiation
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    Effects of radiation on mixed convection stagnation-point flow of MHD third-grade nanofluid

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contributor authorبیژن گل افشانen
contributor authorاصغر برادران رحیمیen
contributor authorBijan Golafshanfa
contributor authorAsgar Bradaran Rahimifa
date accessioned2020-06-06T13:39:08Z
date available2020-06-06T13:39:08Z
date issued2019
identifier urihttps://libsearch.um.ac.ir:443/fum/handle/fum/3363594?locale-attribute=en
description abstractThis paper considers the problem of the two-dimensional mixed convection stagnation-point flow of a magnetohydrodynamic non-Newtonian nanofluid bounded by a vertical stretching sheet. Convective surface boundary and zero surface nanoparticle mass flux conditions are employed. The effects of buoyancy, radiation, Brownian motion, thermophoresis, and viscous dissipation are taken into account. The stretching velocity is assumed to vary linearly with the distance from the stagnation point. The fluid is electrically conducted with uniform magnetic field, and the work done due to deformation is taken into consideration. The three-coupled partial differential boundary layer equations are reduced to ordinary differential equations by using proper similarity transformations. Analytical solution by homotopy analysis method is obtained. Effects of different physical parameters on the dynamics of the problem are analyzed and discussed.en
languageEnglish
titleEffects of radiation on mixed convection stagnation-point flow of MHD third-grade nanofluiden
typeJournal Paper
contenttypeExternal Fulltext
subject keywordsNanofluid-radiationen
journal titleJournal of Thermal Analysis and Calorimetryfa
pages533-549
journal volume135
journal issue1
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1067431.html
identifier articleid1067431
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