Bulletin of Pure & Applied Sciences- Mathematics and Statistics
  • Year: 2018
  • Volume: 37e
  • Issue: 1

Application of Magneto-Williamson Model in Nanofluid Flow

1Assistant Professor, Dept of Mathematics, Srimad Andavan Arts & Science College, Thiruvanai Kovil, Tiruchirappalli, Tamil Nadu, India-620005, E-mail: andavanmathsramesh@gmail.com

2Research Scholar, Dept of Mathematics, Srimad Andavan Arts & Science College, Thiruvanai Kovil, Tiruchirappalli, Tamil Nadu, India-620005. E-mail: arojebastanly44@gmail.com

*Corresponding Author: A. Rameshkumar, Assistant Professor, Dept. of Mathematics, Srimad Andavan Arts & Science College, Thiruvanai Kovil, Tiruchirappalli, Tamil Nadu, India-620005. E-mail: andavanmathsramesh@gmail.com

Online published on 2 July, 2018.

Abstract

This paper investigates the effect of the nano particle effect on magneto hydrodynamic boundary layer over a stretching in the current of heat generation or absorption with heat and mass fluxes. The governing partial differential equations of the system are transformed into a system of ordinary differential equations and solved numerically with the effect of the non-Newtonian Williamson parameter, heat capacities ratio parameter, heat generation or absorption parameter, Schmidt number on the fluid properties as well as on the skin friction, heat and mass transfer rates are described and explained in detailed through graph.

Keywords

Magneto Hydro Dynamic, nano particle, Williamson fluid model, heat generation. and algorithm