Title of article :
Modelling of fine-scale turbulence mixing noise
Author/Authors :
David W. and Khavaran، نويسنده , , A. and Bridges، نويسنده , , J.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Pages :
24
From page :
1131
To page :
1154
Abstract :
The present paper is a study of aerodynamic noise spectra from model functions that describe the source. The study is motivated by the need to improve the spectral shape of the MGBK jet noise prediction methodology at high frequency. edicted spectral shape usually appears less broadband than measurements and faster decaying at high frequency. Theoretical representation of the source is based on Lilleyʹs equation. Numerical simulations of high-speed subsonic jets as well as some recent turbulence measurements reveal a number of interesting statistical properties of turbulence correlation functions that may have a bearing on radiated noise. These studies indicate that an exponential spatial function may be a more appropriate representation of a two-point correlation compared to its Gaussian counterpart. The effect of source non-compactness on spectral shape is discussed. It is shown that source non-compactness could well be the differentiating factor between the Gaussian and exponential model functions. ticular, the fall-off of the noise spectra at high frequency is studied and it is shown that a non-compact source with an exponential model function results in a broader spectrum and better agreement with data. A recent source model proposed by Tam and Auriault that represents the source as a covariance of the convective derivative of fine-scale turbulence kinetic energy is also examined.
Journal title :
Journal of Sound and Vibration
Serial Year :
2005
Journal title :
Journal of Sound and Vibration
Record number :
1395129
Link To Document :
بازگشت