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On the Boundary Layer Flow over a Moving Surface in a Fluid with Temperature-Dependent Viscosity

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dc.creator Mureithi, Eunice
dc.creator Mwaonanji, J. J.
dc.creator Makinde, Oluwole D.
dc.date 2016-07-19T13:01:58Z
dc.date 2016-07-19T13:01:58Z
dc.date 2012-12
dc.date.accessioned 2018-03-27T08:58:00Z
dc.date.available 2018-03-27T08:58:00Z
dc.identifier Mureithi, E.W., Mwaonanji, J.J. and Makinde, O.D., 2013. On the Boundary Layer Flow over a Moving Surface in a Fluid with Temperature-Dependent Viscosity.
dc.identifier http://hdl.handle.net/20.500.11810/3276
dc.identifier 10.4236/ojfd.2013.32017
dc.identifier.uri http://hdl.handle.net/20.500.11810/3276
dc.description Full text can be accessed at http://file.scirp.org/pdf/OJFD_2013062615492483.pdf
dc.description This paper examines a boundary layer flow over a continuously moving heated flat surface with velocity in a streaming flow with velocity and with temperature dependent viscosity,. The momentum and the energy equations are coupled through the viscous dissipation term. The coupled boundary layer equations are transformed into a self-similar form using an appropriate similarity variable. An efficient numerical technique is used to solve the self-similar boundary layer equations. It is shown that at low enough values for the velocity ratio, an increase in viscous dissipation enhances greatly the local heat transfer leading to temperature overshoots adjacent to the wall. The viscosity variation parameter is shown to have significant effects on the temperature dependent viscosity and the velocity and temperature distribution within the boundary layer.
dc.language en
dc.subject Flat Moving Surface
dc.subject Temperature Dependent Viscosity
dc.subject Self-Similar Equations
dc.subject Viscous Dissipation
dc.title On the Boundary Layer Flow over a Moving Surface in a Fluid with Temperature-Dependent Viscosity
dc.type Journal Article


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