Title of article :
Nanofluid flow over an unsteady stretching surface in presence of thermal radiation
Author/Authors :
Das, Kalidas Kalyani Government Engineering College - Department of Mathematics, India , Duari, Pinaki Ranjan Jadavpur University - Department of Mathematics, India , Kundu, Prabir Kumar Jadavpur University - Department of Mathematics, India
Abstract :
This paper investigates the unsteady boundary layer flow of a nanofluid over a heated stretching sheet with thermal radiation. The transport model employed includes the effects of Brownian motion and thermophoresis. The unsteadiness in the flow field is caused by the timedependence of the stretching velocity, free stream velocity and the surface temperature. The unsteady boundary layer equations are transformed to a system of non-linear ordinary differential equations and solved numerically using a shooting method together with Runge–Kutta–Fehlberg scheme. The clear liquid results from this study are in agreement with the results reported in the literature. It is found that the heat transfer rate at the surface increases in the presence of Brownian motion but reverse effect occurs for thermophoresis.
Keywords :
Nanofluid , Heat and mass transfer , Stretching sheet , Thermal radiation
Journal title :
Alexandria Engineering Journal
Journal title :
Alexandria Engineering Journal