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Modeling of Turbulence Generated Noise in Jets

Modeling of Turbulence Generated Noise in Jets

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Product Details
Author:
Nasa Technical Reports Server (Ntrs)
Publisher:
Bibliogov
Publication Date:
Jul 31, 2013
Number of pages:
28 pages
Binding:
Paperback or Softback
ISBN-10:
1289264945
ISBN-13:
9781289264949

Overview

A numerically calculated Green's function is used to predict jet noise spectrum and its far-field directivity. A linearized form of Lilley's equation governs the non-causal Green s function of interest, with the non-linear terms on the right hand side identified as the source. In this paper, contributions from the so-called self- and shear-noise source terms will be discussed. A Reynolds-averaged Navier-Stokes solution yields the required mean flow as well as time- and length scales of a noise-generating turbulent eddy. A non-compact source, with exponential temporal and spatial functions, is used to describe the turbulence velocity correlation tensors. It is shown that while an exact non-causal Green's function accurately predicts the observed shift in the location of the spectrum peak with angle as well as the angularity of sound at moderate Mach numbers, at high subsonic and supersonic acoustic Mach numbers the polar directivity of radiated sound is not entirely captured by this Green's function. Results presented for Mach 0.5 and 0.9 isothermal jets, as well as a Mach 0.8 hot jet conclude that near the peak radiation angle a different source/Green's function convolution integral may be required in order to capture the peak observed directivity of jet noise.


  • | Author: Nasa Technical Reports Server (Ntrs)
  • | Publisher: Bibliogov
  • | Publication Date: Jul 31, 2013
  • | Number of Pages: 28 pages
  • | Binding: Paperback or Softback
  • | ISBN-10: 1289264945
  • | ISBN-13: 9781289264949

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