An indirect technique for educing the homogenized acoustic impedance of a liner mounted on the wall of a barrel is presented. It is based on measurements and computational simulations of the multimodal scattering matrix of this lined duct. Measurements are performed with a multisource method and the use of an anechoic duct termination. The numerical computation of the scattering matrix relies on a finite element model, and assume that the duct is axisymmetric and uniformly covered by a locally reacting material. The impedance is educed by minimizing the difference between the theoretical and experimental acoustic power dissipations, which are deduced from the scattering matrix. The source is an incoming pressure field generated at one end o...
A theoretical analysis of sound propagation in cylindrical ducts lined with porous material (bulk ab...
The SALUTE project aims at evaluating performance of metacomposites for acoustic smart lining in gra...
A definition of acoustic power in conservation form in lined infinitely long uniform ducts is extend...
This paper reports the initial results of a test series to evaluate a method for determining the nor...
A study of determining impedance of a large-size sound-absorbing liner with azimuthal acoustic modes...
© 2015 by ASME. Liner materials are commonly used to attenuate the noise propagating through a duct ...
Sound propagation through propagation through a duct with non-locally reactive multi-cavity resonato...
A passive acoustic two-port formulation is commonly used to describe the acoustic transmission chara...
In order to assess the performance of advanced acoustic absorbing materials the acoustic impedance s...
Porous materials are used in many vibro-acoustic applications. Different models describe their perfo...
A passive acoustic two-port formulation is commonly used to describe the acoustic trans-mission char...
A two-dimensional impedance eduction theory is extended to three-dimensional sound fields and periph...
This experimental study performed at the Laboratoire d'Acoustique de l'Université du Maine is concer...
International audiencePassive acoustic treatments, also called liners, are the main solution to nois...
This paper focuses on details of impedance eduction based on grazing flow duct testing. In this indi...
A theoretical analysis of sound propagation in cylindrical ducts lined with porous material (bulk ab...
The SALUTE project aims at evaluating performance of metacomposites for acoustic smart lining in gra...
A definition of acoustic power in conservation form in lined infinitely long uniform ducts is extend...
This paper reports the initial results of a test series to evaluate a method for determining the nor...
A study of determining impedance of a large-size sound-absorbing liner with azimuthal acoustic modes...
© 2015 by ASME. Liner materials are commonly used to attenuate the noise propagating through a duct ...
Sound propagation through propagation through a duct with non-locally reactive multi-cavity resonato...
A passive acoustic two-port formulation is commonly used to describe the acoustic transmission chara...
In order to assess the performance of advanced acoustic absorbing materials the acoustic impedance s...
Porous materials are used in many vibro-acoustic applications. Different models describe their perfo...
A passive acoustic two-port formulation is commonly used to describe the acoustic trans-mission char...
A two-dimensional impedance eduction theory is extended to three-dimensional sound fields and periph...
This experimental study performed at the Laboratoire d'Acoustique de l'Université du Maine is concer...
International audiencePassive acoustic treatments, also called liners, are the main solution to nois...
This paper focuses on details of impedance eduction based on grazing flow duct testing. In this indi...
A theoretical analysis of sound propagation in cylindrical ducts lined with porous material (bulk ab...
The SALUTE project aims at evaluating performance of metacomposites for acoustic smart lining in gra...
A definition of acoustic power in conservation form in lined infinitely long uniform ducts is extend...