Darcy–Forchheimer flow of nanofluid due to a curved stretching surface
International Journal of Numerical Methods for Heat & Fluid Flow
ISSN: 0961-5539
Article publication date: 14 December 2018
Issue publication date: 29 January 2019
Abstract
Purpose
The purpose of present communication is to analyze Darcy–Forchheimer flow of viscous nanofluid by curved stretchable surface. Flow in porous medium is characterized by Darcy–Forchheimer relation. Brownian diffusion and thermophoresis are considered. Convective heat and mass boundary conditions are also used at the curved stretchable surface.
Design/methodology/approach
The resulting nonlinear system is solved through shooting technique.
Findings
Skin friction coefficient is enhanced for larger porosity parameter and inertia coefficient while reverse trend is noticed for curvature parameter. Local Nusselt number is enhanced for higher Prandtl number and thermal Biot number, whereas the opposite trend is seen via curvature parameter, porosity parameter, inertia coefficient, thermophoresis parameter and Brownian motion parameter. Local Sherwood number is enhanced for Schmidt number, Brownian motion parameter and concentration Biot number, while reverse trend is noticed for curvature parameter, porosity parameter, inertia coefficient and thermophoresis parameter.
Originality/value
To the best of author’s knowledge, no such consideration has been given in the literature yet.
Keywords
Citation
Saif, R.S., Hayat, T., Ellahi, R., Muhammad, T. and Alsaedi, A. (2019), "Darcy–Forchheimer flow of nanofluid due to a curved stretching surface", International Journal of Numerical Methods for Heat & Fluid Flow, Vol. 29 No. 1, pp. 2-20. https://doi.org/10.1108/HFF-08-2017-0301
Publisher
:Emerald Publishing Limited
Copyright © 2018, Emerald Publishing Limited