An experimental investigation of the composition of jet noise

Author:

Krishnappa G.,Csanady G. T.

Abstract

Noise intensity measurements per octave band have been carried out in the far field of a small circular nozzle, at angles 0-150° from the jet axis, with and without vortex generators. The results, interpreted in the light of recent theoretical conclusions, confirm Lighthill's original suggestion that the dominant noise radiator is the pressure-shearx-rquadrupole at all but the lowest frequencies. At very low frequencies Reynolds stress-shearx-xand x-r quadrupoles contribute comparable amounts of radiation. When the product of Strouhal number (based on nozzle diameter and jet velocity) and jet Mach number exceeds unity the geometrical acoustics approximation becomes valid, but even at such high frequencies the shear noise contribution dominates. Vortex generators, while reducing noise intensity, do not appear to modify drastically the above composition of noise radiators.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference11 articles.

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2. Smith, H. R. & WANG, H. T. 1946 Contracting cones giving uniform throat speeds.J. Aero Sci. pp.356–60.

3. Lighthill, M. J. 1954 On sound generated aerodynamically II.Proc. Roy. Soc. A 222,1–32.

4. Ribner, H. S. 1958 Note on acoustic energy flow in a moving medium.UTIAS TN no. 4.

5. Csanady, G. T. 1966 The effect of mean velocity variations on jet noise.J. Fluid Mech. 26,183–97.

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