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- W1990601466 abstract "A new method has been developed for calculating heat transfer in the constant property turbulent boundary layer with arbitrary distributions of wall temperature and stream velocity. The procedure is as follows. The development of the boundary layer is calculated by one or another of the methods currently available and from the calculated values of H and θ velocity profiles are specified by the use of a suitable two-parameter family. With the velocity distribution in the boundary layer completely determined, shear stress profiles are obtained by applying the equation of motion, and from the profiles of shear stress and mean velocity corresponding profiles of effective viscosity readily follow. With some plausible assumption for turbulent Prandtl number the heat-transfer equation can then be solved directly by a digital computer to obtain temperature profiles and the heat transfer at the wall. The method has been applied in zero and adverse pressure gradients with a step in wall temperature following an initial unheated entry length. Temperature profiles are well behaved and show a region of near similarity in the wall region as observed experimentally elsewhere. It is noticeable that in the adverse pressure gradient heat transfer falls off very much less rapidly than skin friction as separation is approached." @default.
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- W1990601466 date "1967-01-01" @default.
- W1990601466 modified "2023-10-17" @default.
- W1990601466 title "Heat transfer in the constant property turbulent boundary layer" @default.
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- W1990601466 doi "https://doi.org/10.1016/0017-9310(67)90183-4" @default.
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