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Free Convection Fluid Flow from a Spinning Sphere with Temperature-Dependent Physical Properties

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dc.contributor.author Makanda, Gilbert
dc.date.accessioned 2018-11-20T13:04:58Z
dc.date.available 2018-11-20T13:04:58Z
dc.date.issued 2017
dc.identifier.uri http://hdl.handle.net/11462/1762
dc.description Conference Proceedings en_US
dc.description.abstract Natural convection from a spinning sphere with temperature dependent viscosity, thermal conductivity and viscous dissipation was studied. A unique system of non-similar partial differential equations was solved using the bivariate local-linearization method (BLLM). This method use Chebyshev spectral collocation method applied in both the η and ξ directions. Similar equations in the literature are normally solved by inaccurate time-consuming finite difference methods. This work introduces a robust method for solving partial differential equations arising in heat and mass transfer. The numerical method was validated by comparison to the results previously published in the literature. The method is fully described in this article and can be used as an alternative method in solving boundary value problems. This work also presents rarely reported results of the effect of selected parameters on spin-velocity profiles g(η). en_US
dc.format.extent 1 006 630 bytes, 1 file
dc.format.mimetype Application/PDF
dc.language.iso en_US en_US
dc.publisher 4th International Conference of Fluid Flow, Heat and Mass Transfer en_US
dc.subject Free convection en_US
dc.subject spinning sphere en_US
dc.subject local linearization en_US
dc.title Free Convection Fluid Flow from a Spinning Sphere with Temperature-Dependent Physical Properties en_US
dc.type Presentation en_US


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