On the tones and pressure oscillations induced by flow over rectangular cavities

Author:

Tam Christopher K. W.,Block Patricia J. W.

Abstract

Experimental measurements of the frequencies of discrete tones induced by flow over rectangular cavities were carried out over a range of low subsonic Mach numbers to provide a reliable data base for (aircraft wheel well) cavity noise consideration. A mathematical model of the cavity tones and pressure oscillation phenomenon based on the coupling between shear layer instabilities and acoustic feedback is developed to help in understanding the tone generation mechanism. Good agreement is found between discrete tone frequencies predicted by the model and experimental measurements over a wide range of Mach numbers. Evidence of tones generated by the cavity normal mode resonance mechanism at very low subsonic Mach numbers is also presented.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference31 articles.

1. Wygnanski, I. J. & Fiedler, H. E. 1970 The two-dimensional mixing region.J. Fluid Mech. 41,327–361.

2. Tam, C. K. W. 1976 The acoustic modes of a two-dimensional rectangular cavity.J. Sound Vib. 49,353–364.

3. Tam, C. K. W. 1971 Directional acoustic radiation from a supersonic jet generated by shear layer instability.J. Fluid Mech. 46,757–768.

4. Rossiter, J. E. 1964 Wind tunnel experiments of the flow over rectangular cavities at subsonic and transonic speeds.Aero. Res. Counc. R. & M. no. 3438.

5. Roshko, A. 1955 Some measurements of flow in a rectangular cutout.N.A.C.A. Tech. Note no. 3488.

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