Serial/Series Title

Heat Transfer Through Turbulent Friction Layers (open access)

Heat Transfer Through Turbulent Friction Layers

"The "general Prandtl number" Pr(exp 1) - A(sub q)/A Pr, aside from the Reynolds number determines the ratio of turbulent to molecular heat transfer, and the temperature distribution in turbulent friction layers. A(sub q) = exchange coefficient for heat; A = exchange coefficient for momentum transfer. A formula is derived from the equation defining the general Prandtl number which describes the temperature as a function of the velocity" (p. 1).
Date: September 1943
Creator: Reichardt, H.
System: The UNT Digital Library
Periodic Heat Transfer at Small Pressure Fluctuations (open access)

Periodic Heat Transfer at Small Pressure Fluctuations

"The effect of cyclic gas pressure variations on the periodic heat transfer at a flat wall is theoretically analyzed and the differential equation describing the process and its solution for relatively. Small pressure fluctuations developed, thus explaining the periodic heat cycle between gas and wall surface. The processes for pure harmonic pressure and temperature oscillations, respectively, in the gas space are described by means of a constant heat transfer coefficient and the equally constant phase angle between the appearance of the maximum values of the pressure and heat flow most conveniently expressed mathematically in the form of a complex heat transfer coefficient" (p. 1).
Date: September 1943
Creator: Pfriem, H.
System: The UNT Digital Library