Resource Type

Serial/Series Title

Investigation of the Laminar Aerodynamic Heat-Transfer Characteristics of a Hemisphere-Cylinder in the Langley 11-inch Hypersonic Tunnel at a Mach Number of 6.8 (open access)

Investigation of the Laminar Aerodynamic Heat-Transfer Characteristics of a Hemisphere-Cylinder in the Langley 11-inch Hypersonic Tunnel at a Mach Number of 6.8

"A program to investigate the aerodynamic heat transfer of a nonisothermal hemisphere-cylinder has been conducted in the Langley 11-inch hypersonic tunnel at a Mach number of 6.8 and a Reynolds number from approximately 0.14 x 10(6) to 1.06 x 10(6) based on diameter and free-stream conditions. The experimental heat-transfer coefficients were slightly less over the whole body than those predicted by the theory of Stine and Wanlass (NACA technical note 3344) for an isothermal surface. For stations within 45 degrees of the stagnation point the heat-transfer coefficients could be correlated by a single relation between local Stanton number and local Reynolds number" (p. 1001).
Date: March 21, 1956
Creator: Crawford, Davis H. & McCauley, William D.
System: The UNT Digital Library
Comparison of several methods for obtaining the time response of linear systems to either a unit impulse or arbitrary input from frequency-response data (open access)

Comparison of several methods for obtaining the time response of linear systems to either a unit impulse or arbitrary input from frequency-response data

From Summary: "Several methods of obtaining the time response of Linear systems to either a unit impulse or an arbitrary input from frequency-response data are described and compared. Comparisons indicate that all the methods give good accuracy when applied to a second-order system; the main difference is the required computing time. The methods generally classified as inverse Laplace transform methods were found to be most effective in determining the response to a unit impulse from frequency-response data of higher order systems. Some discussion and examples are given of the use of such methods as flight-data-analysis techniques in predicting loads and motions of a flexible aircraft on the basis of simple calculations when the aircraft frequency response is known."
Date: March 16, 1956
Creator: Donegan, James J. & Huss, Carl R.
System: The UNT Digital Library
A reevaluaion of data on atmospheric turbulence and airplane gust loads for application in spectral calculations (open access)

A reevaluaion of data on atmospheric turbulence and airplane gust loads for application in spectral calculations

From Summary: "The available information on the spectrum of atmospheric turbulence is first briefly reviewed. On the basis of these results, methods are developed for the conversion of available gust statistics normally given in terms of counts of gusts or acceleration peaks into a form appropriate for use in spectral calculations. The fundamental quantity for this purpose appears to be the probability distribution of the root-mean-square gust velocity. Estimates of this distribution are derived from data for a number of load histories of transport operations; also, estimates of the variation of this distribution with altitude and weather condition are derived from available data and the method of applying these results to the calculation of airplane gust-response histories in operations is also outlined."
Date: March 5, 1956
Creator: Press, Harry; Meadows, May T. & Hadlock, Ivan
System: The UNT Digital Library
Method for calculating the aerodynamic loading on an oscillating finite wing in subsonic and sonic flow (open access)

Method for calculating the aerodynamic loading on an oscillating finite wing in subsonic and sonic flow

A method is presented for calculating the loading on a finite wing oscillating in subsonic or sonic flow. The method is applicable to any plan form and may be used for determining the loading on deformed wings. The procedure is approximate and requires numerical integration over the wing surface.
Date: March 14, 1956
Creator: Runyan, Harry L. & Woolston, Donald S.
System: The UNT Digital Library