A geometrical acoustics approach is proposed as a practical design tool for absorbent liners in such short flow ducts as may be found in turbofan engine nacelles. As an example, a detailed methodology is presented for three different types of sources in a parallel plate duct containing uniform ambient flow. A plane wave whose wavefronts are not normal to the duct walls, an arbitrarily located point source, and a spatially harmonic line source are each considered. Optimal wall admittance distributions are found, and it is shown how to estimate the insertion loss for any admittance distribution. The extension of the methodology to realistic source distributions in variable area cylindrical or annular ducts containing arbitrary flow is shown t...
The angles of propagation of the wave fronts associated with duct modes are derived for a cylindrica...
A finite difference formulation is presented for wave propagation in a rectangular two-dimensional d...
The results of an experimental and theoretical study of many of the fundamental details of sound pro...
This dissertation considers sound transmission in axisymmetric, uniformly-lined ducts of constant cr...
The development of computational methods in acoustics has led to the introduction of analysis and de...
This thesis contains original research into the propagation of sound in acoustically lined ductswith...
A generalized approximate equation for duct lining sound attenuation is presented. The specification...
A numerical method was developed that could predict the pressure distribution of a ducted source fro...
A prediction method for sound attenuation in acoustically lined circular ducts of uniform cross sect...
An acoustic theory is developed to determine the sound transmission and attenuation through an infin...
An experimental and theoretical programme was undertaken to measure and predict the attenuation of p...
A computerized acoustic attenuation prediction procedure has been developed to evaluate acoustically...
Noise transmission problems where sound propagates in flow ducts occur in a variety of contexts. The...
Linearized wave equation with associated boundary conditions for predicting sound attenuation in sof...
Axial segmentation of acoustically absorbing liners in rectangular, circular or annual duct configur...
The angles of propagation of the wave fronts associated with duct modes are derived for a cylindrica...
A finite difference formulation is presented for wave propagation in a rectangular two-dimensional d...
The results of an experimental and theoretical study of many of the fundamental details of sound pro...
This dissertation considers sound transmission in axisymmetric, uniformly-lined ducts of constant cr...
The development of computational methods in acoustics has led to the introduction of analysis and de...
This thesis contains original research into the propagation of sound in acoustically lined ductswith...
A generalized approximate equation for duct lining sound attenuation is presented. The specification...
A numerical method was developed that could predict the pressure distribution of a ducted source fro...
A prediction method for sound attenuation in acoustically lined circular ducts of uniform cross sect...
An acoustic theory is developed to determine the sound transmission and attenuation through an infin...
An experimental and theoretical programme was undertaken to measure and predict the attenuation of p...
A computerized acoustic attenuation prediction procedure has been developed to evaluate acoustically...
Noise transmission problems where sound propagates in flow ducts occur in a variety of contexts. The...
Linearized wave equation with associated boundary conditions for predicting sound attenuation in sof...
Axial segmentation of acoustically absorbing liners in rectangular, circular or annual duct configur...
The angles of propagation of the wave fronts associated with duct modes are derived for a cylindrica...
A finite difference formulation is presented for wave propagation in a rectangular two-dimensional d...
The results of an experimental and theoretical study of many of the fundamental details of sound pro...