Publication | Open Access
Unsteady Boundary Layer Flow and Heat Transfer of a Casson Fluid past an Oscillating Vertical Plate with Newtonian Heating
118
Citations
33
References
2014
Year
AeroacousticsNewtonian HeatingHeat Transfer ProcessEngineeringUnsteady FlowHeat Transfer EffectAerospace EngineeringMixed ConvectionFluid MechanicsBoundary LayerAerodynamicsNatural ConvectionHeat TransferMultiphase FlowThermal EngineeringConvective Heat TransferCasson Fluid
In this paper, the heat transfer effect on the unsteady boundary layer flow of a Casson fluid past an infinite oscillating vertical plate with Newtonian heating is investigated. The governing equations are transformed to a systems of linear partial differential equations using appropriate non-dimensional variables. The resulting equations are solved analytically by using the Laplace transform method and the expressions for velocity and temperature are obtained. They satisfy all imposed initial and boundary conditions and reduce to some well-known solutions for Newtonian fluids. Numerical results for velocity, temperature, skin friction and Nusselt number are shown in various graphs and discussed for embedded flow parameters. It is found that velocity decreases as Casson parameters increases and thermal boundary layer thickness increases with increasing Newtonian heating parameter.
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