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Effect of Blockage on Heat Transfer Phenomena of Spheroid Particles at Moderate Reynolds and Prandtl Numbers
Authors:N. Kishore  S. Gu
Affiliation:1. University of Southampton, School of Engineering Sciences, Energy Technology, Southampton, United Kingdom;2. Indian Institute of Technology Guwahati, Department of Chemical Engineering, Guwahati, Assam, India
Abstract:Effects of the confining wall or blockage on the heat transfer phenomena of spheroid particles were numerically investigated. The heated spheroid particles were maintained at constant temperature and allowed to sediment in cylindrical tubes filled with Newtonian liquids. In this flow configuration, the heat transfer took place from the heated spheroid particles to the surrounding Newtonian liquid. The governing conservation equations of the mass, momentum, and energy together with appropriate boundary conditions were numerically solved using commercial software based on computational fluid dynamics. A simple correlation for the average Nusselt number of the confined spheroid particles was developed which can be applied in new applications.
Keywords:Heat transfer  Nusselt number  Peclet number  Reynolds number  Spheroid
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