Hostname: page-component-77c89778f8-7drxs Total loading time: 0 Render date: 2024-07-18T04:30:43.435Z Has data issue: false hasContentIssue false

Low-frequency sound propagation in a quasi-one-dimensional flow

Published online by Cambridge University Press:  20 April 2006

R. Mani
Affiliation:
General Electric Company, Corporate Research and Development, Schenectady, New York 12301, U.S.A.

Abstract

A systematic low-frequency theory is developed for the propagation of one-dimensional sound waves in a variable-area duct. The mean flow in the duct is assumed to be isentropic, compressible, and one-dimensional. Two applications are made of the theory. One concerns the reflexion coefficient from a pipe-nozzle combination, in which case comparisons are also made with some experimental data. In the second application, we consider the case of a sonic throat separating subsonic and supersonic flow. In this case, if the mean Mach number distribution in addition to being unity at the throat is also stationary at the throat, there is an axial ‘boundary-layer’ region in which the impedance of the sound wave changes from a fundamentally unsteady (reflexion-free) value at the sonic throat to the quasi-steady value away from the throat.

Type
Research Article
Copyright
© 1981 Cambridge University Press

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

Bechert, D. W. 1979 A.I.A.A. Paper 79-0575.
Bohn, M. S. 1977 J. Sound Vib. 52, 283297.
Davis, S. S. & Johnson, M. L. 1974 Paper presented at the 87th Meeting of the Acoustical Soc. Am., New York.
Ffowcs Williams, J. E. et al. 1972 ARC CP 1195, cha. 2.
Imelmann, C. 1978 Diplomarbeit, Technische Universität Berlin, Institut für Technische Akustik.
Jacques, J. R. 1975 J. Sound Vib. 41, 1332.
Levine, H. & Schwinger, J. 1948 Phys. Rev. 73,
Marble, F. E. 1973 Proc. 1st Interagency Symp. on Univ. Res. in Transp. Noise, Stanford Univ., California, pp. 547561.
Marble, F. E. & Candel, S. M. 1977 J. Sound Vib. 55, 225243.
Tsien, H. S. 1952 J. Am. Rocket Soc. 22, 139143.