Flow and heat transfer over a moving surface with non-linear velocity and variable thickness in a nanofluids in the presence of Brownian motion

Loading...
Thumbnail Image

Date

2015

Journal Title

Journal ISSN

Volume Title

Type

Article

Publisher

ELSEVIER SCIENCE INC

Series Info

APPLIED MATHEMATICS AND COMPUTATION;Volume: 254 Pages: 49-62

Doi

Scientific Journal Rankings

Abstract

The effects of variable thickness, hydromagnetic flow, Brownian motion, heat generation, on heat transfer characteristics and mechanical properties of a moving surface embedded into cooling medium consists of water with nano-particles are studied. The governing boundary layer equations are transformed to ordinary differential equations. These equations are solved analytically using (OHAM) for general conditions. The velocity, temperature, and concentration profiles within the boundary layer are plotted and discussed in details for various values of the different parameters such as Brownian parameter, thermophoresis parameter, shape parameter, magnetic parameter and heat source parameter the effect of the cooling medium and flatness on the mechanical properties of the surface are investigated. (C) 2014 Elsevier Inc. All rights reserved.

Description

Accession Number: WOS:000349852200007

Keywords

University for Nanofluids, Variable thickness, Hydro-magnetic flow, Heat generation, Non-linear velocity

Citation

Cited References in Web of Science Core Collection: 33