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A solution for fully developed turbulent heat transfer in a circular tube with uniform wall temperature, using a continuous velocity profile

dc.contributorGraduate Program in Mechanical Engineering.
dc.contributor.advisorUmur, Aydın.
dc.contributor.authorMerttürk, İbrahim.
dc.date.accessioned2023-03-16T11:16:03Z
dc.date.available2023-03-16T11:16:03Z
dc.date.issued1970.
dc.description.abstractHeat transfer coefficients and temperature profiles for fully developed turbulent pipe flow with uniform wall temperature are predicted for P 1. The continous and differentiable velocity profile of Pai (1)1 is used to integrate the energy equation numerically. Turbulent pipe flow is assumed to be steady, and thermally and hydrodynamically fully developed. The ratio of the eddy diffusivities is taken to be unity. Axial conduction is neglected, and the flow is assumed to be axisymmetric with constant fluid properties. The results obtained are presented as curves and tables. Three correlating equations are given which predict the Nusselt number for liquid-metals and for gases.
dc.format.extent30 cm.
dc.format.pagesx, 48 leaves;
dc.identifier.otherME 1970 M55
dc.identifier.urihttps://hdl.handle.net/20.500.14908/15020
dc.publisherThesis (M.S.) - Robert College. Faculty of Graduate School of Engineering, 1970.
dc.relationIncludes appendices.
dc.relationIncludes appendices.
dc.subject.lcshHeat -- Transmission -- Mathematical models.
dc.subject.lcshTurbulence.
dc.subject.lcshTubes -- Fluid dynamics.
dc.titleA solution for fully developed turbulent heat transfer in a circular tube with uniform wall temperature, using a continuous velocity profile

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