Thermal radiation effects on the flow and heat transfer in a liquid film on an unsteady stretching sheet
• 2011
Publication Information
Authors
Mostafa A. A. Mahmoud
Keywords
Not Available
Journal
Not Available
Publisher
Not Available
Volume
Not Available
Issue
Not Available
Pages
Not Available
publication.type
International
Paper Link
Not Available
Supplementary Materials
Not Available
Abstract
The influence of thermal radiation on the flow and heat transfer within Newtonian liquid film over an
unsteady stretching sheet with and without thermocapillarity is examined. The governing non-linear partial
differential equations describing the problem are reduced to a system of nonlinear ordinary differential
equations using similarity transformation, which is solved numerically for different values of the thermal
radiation parameter and the thermocapillarity parameter. The results show that the dimensionless velocity,
the film thickness and the local Nusselt number increase as the thermocapillarity parameter increases,
while the free surface temperature decreases with increasing the thermocapillarity parameter. Also, both
the dimensionless temperature and the free surface temperature increase and the local Nusselt number
decreases as the thermal radiation parameter increases.
unsteady stretching sheet with and without thermocapillarity is examined. The governing non-linear partial
differential equations describing the problem are reduced to a system of nonlinear ordinary differential
equations using similarity transformation, which is solved numerically for different values of the thermal
radiation parameter and the thermocapillarity parameter. The results show that the dimensionless velocity,
the film thickness and the local Nusselt number increase as the thermocapillarity parameter increases,
while the free surface temperature decreases with increasing the thermocapillarity parameter. Also, both
the dimensionless temperature and the free surface temperature increase and the local Nusselt number
decreases as the thermal radiation parameter increases.
Staff Members - Benha University