A previously reported closed form solution is expanded to determine effects of isentropic mean flow on mode propagation in a slowly converging-diverging duct, a circular cosh duct. On the assumption of uniform steady fluid density, the mean flow increases the power transmission coefficient. The increase is directly related to the increase of the cutoff ratio at the duct throat. With the negligible transverse gradients of the steady fluid variables, the conversion from one mode to another is negligible, and the power transmission coefficient remains unchanged with the mean flow direction reversed. With a proper choice of frequency parameter, many different modes can be made subject to a single value of the power transmission loss. A systemat...
Sound transmission through straight circular ducts with a uniform inviscid mean flow and a constant ...
Sound transmission through straight circular ducts with a uniform inviscid mean flow and a constant ...
Linearized wave equation with associated boundary conditions for predicting sound attenuation in sof...
Higher order mode propagation in a nonuniform circular duct without mean flow was investigated. An a...
Simple formulas for calculating acoustic reflection and transmission coefficients for converging-div...
An acoustic theory is developed to determine the sound transmission and attenuation through an infin...
The method of weighted residuals in the form of a modified Galerkin method with boundary residuals w...
An acoustic theory is developed to determine the sound transmission and attenuation through an infin...
Methods of determining the transmission and attenuation of sound propagating in nonuniform ducts wit...
The time-dependent governing acoustic-difference equations and boundary conditions are developed and...
Standing or traveling waves which vary algebraically with the axial distance in uniform ducts with s...
An experiment was conducted to investigate mode redistribution in lined circular ducts with circumfe...
The NASA Broadband Aeroacoustic Stator Simulation code was used to compute the acoustic field for hi...
Multimode sound radiation from an unflanged, semi-infinite, rigid-walled circular duct with uniform ...
An analytic Green’s function is derived for a lined circular duct, both hollow and annular, containi...
Sound transmission through straight circular ducts with a uniform inviscid mean flow and a constant ...
Sound transmission through straight circular ducts with a uniform inviscid mean flow and a constant ...
Linearized wave equation with associated boundary conditions for predicting sound attenuation in sof...
Higher order mode propagation in a nonuniform circular duct without mean flow was investigated. An a...
Simple formulas for calculating acoustic reflection and transmission coefficients for converging-div...
An acoustic theory is developed to determine the sound transmission and attenuation through an infin...
The method of weighted residuals in the form of a modified Galerkin method with boundary residuals w...
An acoustic theory is developed to determine the sound transmission and attenuation through an infin...
Methods of determining the transmission and attenuation of sound propagating in nonuniform ducts wit...
The time-dependent governing acoustic-difference equations and boundary conditions are developed and...
Standing or traveling waves which vary algebraically with the axial distance in uniform ducts with s...
An experiment was conducted to investigate mode redistribution in lined circular ducts with circumfe...
The NASA Broadband Aeroacoustic Stator Simulation code was used to compute the acoustic field for hi...
Multimode sound radiation from an unflanged, semi-infinite, rigid-walled circular duct with uniform ...
An analytic Green’s function is derived for a lined circular duct, both hollow and annular, containi...
Sound transmission through straight circular ducts with a uniform inviscid mean flow and a constant ...
Sound transmission through straight circular ducts with a uniform inviscid mean flow and a constant ...
Linearized wave equation with associated boundary conditions for predicting sound attenuation in sof...