Dual solutions for radiative MHD forced convective flow of a nanofluid over a slendering stretching sheet in porous medium

Dublin Core

Title

Dual solutions for radiative MHD forced convective flow of a nanofluid over a slendering stretching sheet in porous medium

Subject

MHD
Nanofluid
Radiation
Porous medium
Slendering stretching sheet

Description

In this study we analyzed the magnetohydrodynamic forced convective flow of a nanofluid over a slendering stretching sheet in porous medium in presence of thermal radiation and slip effects. We presented dual solutions for no-slip and Navier slip conditions. Using self similarity transformation, the governing partial differential equations are transformed into nonlinear ordinary differential equations and solved numerically using bvp5c Matlab package. The effects of dimensionless governing parameters on velocity and temperature profiles of the flow are discussed with the help of graphs. Numerical computations are carried out and discussed for skin friction coefficient and local Nusselt number. We found an excellent agreement of the present results with the existed results under some special conditions. Results indicate that the dual solutions exist only for certain range of velocity slip parameter. It is also found that the heat transfer performance is high in presence of velocity slip effect.

Creator

Sulochana, C.
Sandeep, N.

Source

Journal of Naval Architecture and Marine Engineering; Vol. 12 No. 2 (2015); 115-124
2070-8998
1813-8535

Publisher

Association of Naval Architects and Marine Engineers

Date

2015-12-30

Rights

Copyright (c) 2015 Journal of Naval Architecture and Marine Engineering

Relation

Format

application/pdf

Language

eng

Type

info:eu-repo/semantics/article
info:eu-repo/semantics/publishedVersion

Identifier

Citation

C Sulochana. and N Sandeep., Dual solutions for radiative MHD forced convective flow of a nanofluid over a slendering stretching sheet in porous medium, Association of Naval Architects and Marine Engineers, 2015, accessed November 16, 2024, https://igi.indrastra.com/items/show/3264

Social Bookmarking