To calculate the noise emanating from a turbulent flow using an acoustic analogy knowledge concerning the unsteady characteristics of the turbulence is required. Specifically, the form of the turbulent correlation tensor together with various time and length-scales are needed. However, if a Reynolds Averaged Navier–Stores calculation is used as the starting point then one can only obtain steady characteristics of the flow and it is necessary to model the unsteady behavior in some way. While there has been considerable attention given to the correct way to model the form of the correlation tensor less attention has been given to the underlying physics that dictate the proper choice of time-scale. In this paper the authors recognize that ther...
For both Lilley and moving-frame Lighthill analogies the applied-stress equivalent source is given b...
The ability to predict jet noise is crucial for the aviation industry, particularly in order to meet...
Modeling and simulation of turbulent jet noise is an ongoing numerical challenge relevant to noise ...
To calculate the noise emanating from a turbulent flow using an acoustic analogy knowledge concernin...
To calculate the noise emanating from a turbulent flow (such as a jet flow) using Lighthill's analog...
The turbulent energy dissipation rate time-scale and length-scale has been routinely used for the pr...
This paper presents a study of the effects of the form of the time-scale used in aerodynamic noise p...
A jet noise source model based on the Lighthill acoustic analogy is presented. Although much of the ...
The acoustic analogy introduced by Lighthill to study jet noise is now over 50 years old. In the pre...
Frequency dependency of the defining parameters in aero-acoustics has been a controversial issue and...
This paper examines some recent, developments in the modeling of supersonic jet noise using a com-pr...
This paper describes several methods for the prediction of jet noise. All but one of the noise predi...
Three statistical jet noise prediction models are compared for a representative set of single-stream...
The ability to predict jet noise is crucial for the aviation industry, particularly in order to meet...
A numerically calculated Green's function is used to predict jet noise spectrum and its far-field di...
For both Lilley and moving-frame Lighthill analogies the applied-stress equivalent source is given b...
The ability to predict jet noise is crucial for the aviation industry, particularly in order to meet...
Modeling and simulation of turbulent jet noise is an ongoing numerical challenge relevant to noise ...
To calculate the noise emanating from a turbulent flow using an acoustic analogy knowledge concernin...
To calculate the noise emanating from a turbulent flow (such as a jet flow) using Lighthill's analog...
The turbulent energy dissipation rate time-scale and length-scale has been routinely used for the pr...
This paper presents a study of the effects of the form of the time-scale used in aerodynamic noise p...
A jet noise source model based on the Lighthill acoustic analogy is presented. Although much of the ...
The acoustic analogy introduced by Lighthill to study jet noise is now over 50 years old. In the pre...
Frequency dependency of the defining parameters in aero-acoustics has been a controversial issue and...
This paper examines some recent, developments in the modeling of supersonic jet noise using a com-pr...
This paper describes several methods for the prediction of jet noise. All but one of the noise predi...
Three statistical jet noise prediction models are compared for a representative set of single-stream...
The ability to predict jet noise is crucial for the aviation industry, particularly in order to meet...
A numerically calculated Green's function is used to predict jet noise spectrum and its far-field di...
For both Lilley and moving-frame Lighthill analogies the applied-stress equivalent source is given b...
The ability to predict jet noise is crucial for the aviation industry, particularly in order to meet...
Modeling and simulation of turbulent jet noise is an ongoing numerical challenge relevant to noise ...