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EFFECT OF TEMPERATURE DEPENDENT VISCOSITY ON MIXED CONVECTION HEAT TRANSFER IN AN UNCONFINED FLOW ACROSS A CIRCULAR CYLINDER

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dc.contributor.author Dilipkumar, Kakkar Pratik
dc.date.accessioned 2014-12-08T08:31:26Z
dc.date.available 2014-12-08T08:31:26Z
dc.date.issued 2012
dc.identifier M.Tech en_US
dc.identifier.uri http://hdl.handle.net/123456789/13672
dc.guide Bharti, Ram Prakash
dc.description.abstract Newtonian or non-Newtonian fluid flow across circular cylinder has been studied extensively because of its numerous practical applications Bluff body has received a great deal of attention especially for the prediction of loads on engineering structures such as offshore platform supports, ocean pipelines, high buildings, bridge piers etc. and for analysis of wake control in aeronautical engineering as well (Mohammed and Salman, 2007). Reliable knowledge of flow characteristics and hydrodynamic forces exerted on bodies immersed in fluids is needed to design the support structures exposed to non-Newtonian fluids in polymer melt operations. Due to the simple nature of the geometry, this flow has been frequently used to gain insights into the physics of flow and to understand the wake dynamics of bluff bodies. Moreover, this geometry has also been used to validate numerical solution methodologies and to assess the efficiency of various numerical algorithms. en_US
dc.language.iso en en_US
dc.subject CHEMICAL ENGINEERING en_US
dc.subject TEMPERATURE DEPENDENT VISCOSITY en_US
dc.subject MIXED CONVECTION HEAT TRANSFER en_US
dc.subject CIRCULAR CYLINDER en_US
dc.title EFFECT OF TEMPERATURE DEPENDENT VISCOSITY ON MIXED CONVECTION HEAT TRANSFER IN AN UNCONFINED FLOW ACROSS A CIRCULAR CYLINDER en_US
dc.type M.Tech Dessertation en_US
dc.accession.number G21487 en_US


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