Author:
Fetecau Constantin,Akhtar Shahraz,Pop Ioan,Fetecau Corina
Abstract
Purpose
The purpose of this note is to provide general solutions for radiative magnetohydrodynamic natural convection flow.
Design/methodology/approach
To obtain exact solutions for such motions of Newtonian fluids, as seen in the existing literature, the Laplace transform technique is used.
Findings
General solutions are obtained for temperature, velocity and Nusselt number in the presence of heat source and shear stress on the boundary. They can generate exact solutions for any motion with technical relevance of this type. Fluid velocity is presented as the sum of mechanical and thermal components. Influence of physical parameters on temperature and velocity is graphically underlined for ramp-type heating plate that applies a constantly accelerating shear stress to the fluid. Thermal and mechanical effects are significant and must be taken into consideration.
Practical implications
For illustration, as well as for a check of results, three special cases with applications in engineering are considered and some known results are recovered.
Originality/value
Obtained solutions are presented in the simplest forms. In addition, the solutions corresponding to cosine oscillatory heating and oscillating shear are presented so that they can be immediately reduced to those corresponding to constant heating and uniform shear if the oscillations’ frequency becomes zero. Heat transfer characteristics with thermal radiation are graphically illustrated using one parameter only for such motions.
Subject
Applied Mathematics,Computer Science Applications,Mechanical Engineering,Mechanics of Materials
Reference27 articles.
1. Magnetohydrodynamic transient flow through a porous medium bounded by a hot vertical plate in the presence of radiation: a theoretical analysis;Journal of Engineering Physics and Thermophysics,2013
2. Natural convective magneto-nanofluid fluid flow and radiative heat transfer past a moving vertical plate;Alexandria Engineering Journal,2015
3. The blood flow of Prandtl fluid through a tapered stenosed arteries in permeable walls with magnetic field;Communications in Theoretical Physics,2015
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