A Mixed Convection Boundary Layer Flow over a Vertical Wall in a Porous Medium, with Exponentially Varying Fluid Viscosity

dc.creatorMureithi, Eunice
dc.date2016-07-19T13:01:47Z
dc.date2016-07-19T13:01:47Z
dc.date2013-12
dc.date.accessioned2018-03-27T08:58:00Z
dc.date.available2018-03-27T08:58:00Z
dc.descriptionThis study investigates a mixed convection boundary layer flow over a vertical wall embedded in a highly porous medium. The fluid viscosity is assumed to decrease exponentially with temperature. The boundary layer equations are transformed into a non-similar form using an appropriate non- similar variable ξ and a pseudo-similar variable η. The non-similar equations are solved using an efficient local non-similarity method. The effect of viscosity variation parameter on the heat transfer, skin friction and the velocity and temperature distribution within the boundary layer is investigated. The viscosity variation parameter, the viscous dissipation parameter and non-simi- larity variable are shown to have a significant effect on velocity and thermal boundary layer and also on the skin friction coefficient and heat transfer at the wall
dc.identifierMureithi, E., 2014. A mixed convection boundary layer flow over a vertical wall in a porous medium, with exponentially varying fluid viscosity.
dc.identifierhttp://hdl.handle.net/20.500.11810/3271
dc.identifier10.4236/jamp.2014.28087
dc.identifier.urihttp://hdl.handle.net/20.500.11810/3271
dc.languageen
dc.subjectPorous Medium
dc.subjectNon-Darcy
dc.subjectMixed Convection Boundary Layer
dc.subjectTemperature Dependent Viscosit
dc.titleA Mixed Convection Boundary Layer Flow over a Vertical Wall in a Porous Medium, with Exponentially Varying Fluid Viscosity
dc.typeJournal Article, Peer Reviewed

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