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- W1566282183 abstract "The quantitative prediction of turbulent flow and convection in channels extends at least from Boussinesq, who in 1877 proposed the eddy-viscosity model, to Papavassiliou and Hanratty, who in 1997 computed the rate of transport of molecular species by the turbulent fluctuations using Lagrangian direct numerical simulation. The history and current state of the art of such predictions are examined herein. It is concluded that the eddy-diffusivity, mixing-length, and κ-e models should now be completely abandoned in favor of generalized correlating equations for the turbulent shear stress and the turbulent heat flux density based on semitheoretical asymptotic expressions, even though those for the latter quantity are yet uncertain and incomplete. Correlating equations for the time-averaged velocity distribution, the friction factor, the time-averaged temperature distribution, and the heat transfer coefficient may serve as conveniences, but such expressions are unessential since these four quantities may be determined numerically with comparable accuracy from simple, single integrals of the two more elementary quantities. Such direct numerical evaluations reveal that all of the classical algebraic analogies between heat and momentum transfer are in significant error functionally as well as numerically, in large part because of inaccurate representations of the radial variation of the total heat flux density. In the interests of simplicity and clarity, this presentation is primarily limited to fully developed heat transfer in a uniformly heated round tube, but the methodologies and formulations may readily be adapted or extended for other one-dimensional flows and other thermal boundary conditions." @default.
- W1566282183 created "2016-06-24" @default.
- W1566282183 creator A5082406832 @default.
- W1566282183 date "2001-01-01" @default.
- W1566282183 modified "2023-10-17" @default.
- W1566282183 title "Turbulent flow and convection: The prediction of turbulent flow and convection in a round tube" @default.
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- W1566282183 doi "https://doi.org/10.1016/s0065-2717(01)80013-7" @default.
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