Author:
Md Ali Fadzilah,Naganthran Kohilavani,Nazar Roslinda,Pop Ioan
Abstract
Purpose
This study aims to perform a stability analysis on a steady magnetohydrodynamic (MHD) mixed convection boundary-layer stagnation-point flow of an incompressible, viscous and electrically conducting fluid over a vertical flat plate. The effect of induced magnetic field is also considered.
Design/methodology/approach
The governing boundary layer equations are transformed into a system of ordinary differential equations using the similarity transformations. The system is then solved numerically using the “bvp4c” function in MATLAB.
Findings
Dual solutions are found to exist for a certain range of the buoyancy parameter for both the assisting and opposing flows. The results from the stability analysis showed that the first solution (upper branch) is stable and valid physically, while the second solution (lower branch) is unstable.
Practical implications
This problem is important in many metallurgical processes, namely, drawing, annealing and tinning of copper wires. The results obtained are very useful for researchers to determine which solution is physically stable, whereby mathematically more than one solution exists for the skin friction coefficient and the heat transfer characteristics.
Originality/value
The present results of the stability analysis are original and new for the problem of MHD mixed convection stagnation-point flow of viscous conducting fluid over a vertical flat plate, with the effect of induced magnetic field.
Subject
Applied Mathematics,Computer Science Applications,Mechanical Engineering,Mechanics of Materials
Reference14 articles.
1. MHD micropolar fluid flow toward a stagnation point on a vertical surface under induced magnetic field with radiative heat flux;International Journal of Engineering Research & Technology,2013
2. MHD mixed convection boundary layer flow toward a stagnation point on a vertical surface with induced magnetic field;ASME Journal of Heat Transfer,2011
3. Mixed convection boundary-layer flow near the stagnation point on a vertical surface in a porous medium: Brinkman model with slip;Transport in Porous Media,2009
4. Theory of the laminar flow of an electrically conducting liquid in a homogeneous magnetic field;Mat. Fys. Medd. K. Dan. Vidensk. Selsk,1937
5. Magnetohydrodynamic (MHD) flow of a micropolar fluid towards a stagnation point on a vertical surface;Computers & Mathematics with Applications,2008
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