EngineeringMaterials SciencePhysics

S. S. Ghadikolaei, Kh. Hosseinzadeh, D. Ganji

2019.2.11World Journal of Engineering

DOI: 10.1108/wje-06-2018-0204

tlooto Summary

Investigates magneto Eyring-Powell nanofluid flow over an inclined stretching cylinder with thermal radiation and Joule heating effects.

Abstract

Purpose The purpose of this study is, mixed convection on magnetohydrodynamic (MHD) flow of Eyring–Powell nanofluid over a stretching cylindrical surface in the presence of thermal radiation, chemical reaction, heat generation and Joule heating effect is investigated and analyzed. The Brownian motion and thermophoresis phenomenon are used to model nanoparticles (Buongiorno’s model).

Design/methodology/approach The numerical method is applied to solve the governing equations. Obtained results from the effects of different parameters changes on velocity, temperature and concentration profiles are reported as diagrams.

Findings As a result, velocity profile has been reduced by increasing the Hartman number (magnetic field parameter) because of the existence of Lorentz force and increasing Eyring–Powell fluid parameter. In addition, the nanoparticle concentration profile has been reduced because of increase in chemical reaction parameter. At the end, the effects of different parameters on skin friction coefficient and local Nusselt number are investigated.

Originality/value Eyring–Powell nanofluid and MHD have significant influence on flow profile.

Citation format

GHADIKOLAEI, S. S.; HOSSEINZADEH, Kh.; GANJI, D. Investigation on magneto eyring-powell nanofluid flow over inclined stretching cylinder with nolinear thermal radiation and joule heating effect. World Journal of Engineering, 2019.