Generalized aerodynamic forces on an oscillating cylindrical shell
Open Access
- 1 January 1966
- journal article
- Published by American Mathematical Society (AMS) in Quarterly of Applied Mathematics
- Vol. 24 (1) , 1-17
- https://doi.org/10.1090/qam/99934
Abstract
The present paper presents a mathematical and numerical solution for the problem of determining the aerodynamic forces on a harmonically oscillating cylindrical shell at supersonic speeds within the framework of the classical, linearized, potential flow theory. The method of solution is given in detail and extensive numerical results are presented to indicate the nature of the aerodynamic forces. Comparisons of the present results are made with those of simpler, but more approximate theories, such as the quasi-steady, two-dimensional theory and a (generalized) “slender-body” theory, to indicate where these may be used with confidence.Keywords
This publication has 3 references indexed in Scilit:
- APPROXIMATE INVERSION OF A CLASS OF LAPLACE TRANSFORMS APPLICABLE TO SUPERSONIC FLOW PROBLEMSThe Quarterly Journal of Mechanics and Applied Mathematics, 1964
- Supersonic Panel Flutter of a Cylindrical Shell of Finite LengthJournal of the Aerospace Sciences, 1961
- Supersonic Flutter of a Cylindrical ShellJournal of the Aeronautical Sciences, 1957