Article ID Journal Published Year Pages File Type
1798218 Journal of Magnetism and Magnetic Materials 2016 8 Pages PDF
Abstract

•Constitutive relation for second grade fluid is employed.•Flow is caused by a nonlinear stretching surface.•Magnetic field applied is in transverse direction.•Nanofluid model consists of Brownian motion and thermophoresis.•Magnetic Reynolds number is assumed small.

This research article addresses the magnetohydrodynamic (MHD) flow of second grade nanofluid over a nonlinear stretching sheet. Heat and mass transfer aspects are investigated through the thermophoresis and Brownian motion effects. Second grade fluid is assumed electrically conducting through a non-uniform applied magnetic field. Mathematical formulation is developed subject to small magnetic Reynolds number and boundary layer assumptions. Newly constructed condition having zero mass flux of nanoparticles at the boundary is incorporated. Transformations have been invoked for the reduction of partial differential systems into the set of nonlinear ordinary differential systems. The governing nonlinear systems have been solved for local behavior. Graphical results of different influential parameters are studied and discussed in detail. Computations for skin friction coefficient and local Nusselt number have been carried out. It is observed that the effects of thermophoresis parameter on the temperature and nanoparticles concentration distributions are qualitatively similar. The temperature and nanoparticles concentration distributions are enhanced for the larger magnetic parameter.

Related Topics
Physical Sciences and Engineering Physics and Astronomy Condensed Matter Physics
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