A recent application of the time-domain equivalent of the classical acoustic impedance condition, i.e. the particle displacement continuity equation, to the numerical simulations of a flow-impedance tube in the time domain yielded reasonably good results with uniform mean flows. The present paper extends this application to include sheared mean flow effects on sound propagation over acoustically treated walls. To assess the prediction improvements with sheared flows, especially at relatively high Mach numbers, numerical simulations of the NASA Langley flow-impedance tube are carried out at actual conditions. Calculations are realized for mean flow peak velocities as high as Mach 0.5 at various frequencies. Results are compared with those ob...
Articles in AdvanceInternational audienceIn the framework of improving aircraft nacelle design to co...
The effect of viscosity and thermal conduction on the acoustics in a shear layer above an impedance ...
Lined ducts often form a part of practical flow duct acoustic systems. The prediction of attenuation...
A recent application of the time-domain equivalent of the classical acoustic impedance condition, i....
This work develops the so-called compensated impedance boundary conditions that enable stable time d...
sound propagation in a lined duct with uniform mean flow has important practical interest for noise ...
This paper presents a theoretical model to predict plane wave propagation inside a lined duct in the...
International audienceA general methodology to simulate acoustic propagation in ducts with extended-...
The accuracy of existing impedance boundary conditions is investigated, and new impedance boundary c...
A time dependent numerical solution of the linearized continuity and momentum equation was developed...
Acoustic liners are used extensively in engineering applications, particularly in aero-engines and a...
This paper presents results of an investigation of the effects of shear flow profile on impedance ed...
International audienceA partial gradient term suppression (GTS) method aimingat removing hydrodyna...
International audienceA partial gradient term suppression (GTS) method aimingat removing hydrodyna...
Articles in AdvanceInternational audienceIn the framework of improving aircraft nacelle design to co...
Articles in AdvanceInternational audienceIn the framework of improving aircraft nacelle design to co...
The effect of viscosity and thermal conduction on the acoustics in a shear layer above an impedance ...
Lined ducts often form a part of practical flow duct acoustic systems. The prediction of attenuation...
A recent application of the time-domain equivalent of the classical acoustic impedance condition, i....
This work develops the so-called compensated impedance boundary conditions that enable stable time d...
sound propagation in a lined duct with uniform mean flow has important practical interest for noise ...
This paper presents a theoretical model to predict plane wave propagation inside a lined duct in the...
International audienceA general methodology to simulate acoustic propagation in ducts with extended-...
The accuracy of existing impedance boundary conditions is investigated, and new impedance boundary c...
A time dependent numerical solution of the linearized continuity and momentum equation was developed...
Acoustic liners are used extensively in engineering applications, particularly in aero-engines and a...
This paper presents results of an investigation of the effects of shear flow profile on impedance ed...
International audienceA partial gradient term suppression (GTS) method aimingat removing hydrodyna...
International audienceA partial gradient term suppression (GTS) method aimingat removing hydrodyna...
Articles in AdvanceInternational audienceIn the framework of improving aircraft nacelle design to co...
Articles in AdvanceInternational audienceIn the framework of improving aircraft nacelle design to co...
The effect of viscosity and thermal conduction on the acoustics in a shear layer above an impedance ...
Lined ducts often form a part of practical flow duct acoustic systems. The prediction of attenuation...