Experimental Investigation of a Model of a Two-Stage Turboblower (open access)

Experimental Investigation of a Model of a Two-Stage Turboblower

"In the present paper an investigation is made of two stages of a multistage turboblower having a vaneless diffuser behind the impeller and guide vanes at the inlet to the nest stage. The method employed was that of investigating the performance of the successive elements of the blower (the impeller, vaneless diffuser, ets.) whereby the kinematics of the flow through the blower could be followed and the pressure at the different points computed. The character of the flow and the physical significance of the loss coefficients could thereby be determined so as to secure the best agreement of the computed with the actual performance of the blower" (p. 1).
Date: April 1943
Creator: Dovjik, S. & Polikovsky, W.
System: The UNT Digital Library
Heat Transfer of Airfoils and Plates (open access)

Heat Transfer of Airfoils and Plates

"The few available test data on the heat dissipation of wholly or partly heated airfoil models are compared with the corresponding data for the flat plate as obtained by an extension of Prandtl's momentum theory, with differentiation between laminar and turbulent boundary layer and transitional region between both, the extent and appearance of which depend upon certain critical factors. The satisfactory agreement obtained justifies far-reaching conclusions in respect to other profile forms and arrangements of heated surface areas. The temperature relationship of the material quantities in its effect on the heat dissipation is discussed as far as is possible at the present state of research, and it is shown that the profile drag of heated wing surfaces can increase or decrease with the temperature increase depending upon the momentarily existent structure of the boundary layer" (p. 1).
Date: April 1943
Creator: Seibert, Otto
System: The UNT Digital Library
Theoretical Determination of Axial Fan Performance (open access)

Theoretical Determination of Axial Fan Performance

"The report presents a method for the computation of axial fan characteristics. The method is based on the assumption that the law of constancy of the circulation along the blade holds, approximately, for all fan conditions for which the blade elements operate at normal angles of attack (up to the stalling angles). Pressure head coefficient K(sub a) and power coefficient K(sub u) for the force components in the axial and tangential directions, respectively, and analogous to the lift and drag coefficients C(sub y) and C(sub x) are conveniently introduced" (p. 1).
Date: April 1943
Creator: Struve, E.
System: The UNT Digital Library