Serial/Series Title

Theoretical Prediction of Pressure Distributions on Nonlifting Airfoils at High Subsonic Speeds (open access)

Theoretical Prediction of Pressure Distributions on Nonlifting Airfoils at High Subsonic Speeds

"Theoretical pressure distributions on nonlifting circular-arc airfoils in two-dimensional flows with high subsonic free-stream velocity are found by determining approximate solutions, through an iteration process, of an integral equation for transonic flow proposed by Oswatitsch. The integral equation stems directly from the small-disturbance theory for transonic flow. This method of analysis possesses the advantage of remaining in the physical, rather than the hodograph, variable and can be applied in airfoils having curved surfaces" (p. 1).
Date: November 19, 1953
Creator: Spreiter, John R. & Alksne, Alberta
System: The UNT Digital Library
The Calculation of Pressure on Slender Airplanes in Subsonic and Supersonic Flow (open access)

The Calculation of Pressure on Slender Airplanes in Subsonic and Supersonic Flow

"Under the assumption that a wing, body, or wing-body combination is slender or flying at near sonic velocity, expressions are given which permit the calculation of pressure in the immediate vicinity of the configuration. The disturbance field, in both subsonic and supersonic flight, is shown to consist of two-dimensional disturbance fields extending laterally and a longitudinal field that depends on the streamwise growth of cross-sectional area. A discussion is also given of couplings, between lifting and thickness effects, that necessarily arise as a result of the quadratic dependence of pressure on the induced velocity components" (author).
Date: November 28, 1953
Creator: Heaslet, Max A. & Lomax, Harvard
System: The UNT Digital Library