International audienceThe direct and inverse scattering problems of ultrasonic wave propagation in double-layered porous materials is studied. The inverse problem is solved using experimental transmitted waves at normal incidence. The double-layered porous media consist of two slabs of homogeneous isotropic porous materials with an elastic frame. The ultrasonic propagation in multilayered porous material is modelled using Biot's theory. The sensitivity of the Biot parameters with respect to the transmitted wave is studied showing the effect on each parameter on transmitted waveforms. The direct and inverse scattering problems are discussed for double-layered porous samples using experimental transmitted wave
Ultrasonic reflection and transmission measurements on saturated, plane-parallel, poroelastic slabs ...
Ultrasonic reflection and transmission measurements on saturated, plane-parallel, poroelastic slabs ...
This paper provides an experimental validation of the Pride-Lafarge [6,7] model of the acoustic wave...
This paper provides a temporal model of the direct and inverse scattering problem for the propagatio...
This paper provides a temporal model of the direct and inverse scattering problem for the propagatio...
This paper concerns a time-domain model of transient wave propagation in double-layered porous mater...
This paper concerns a time-domain model of transient wave propagation in double-layered porous mater...
International audienceThis paper concerns the ultrasonic characterization of air-saturated double-la...
Direct and inverse scattering problem in air filled porous materials is solved. A simple ultrasonic ...
International audienceWe propose an indirect method for measuring simultaneously acoustic parameters...
Direct and inverse scattering problem in air filled porous materials is solved. A simple ultrasonic ...
International audienceMeasurement of tortuosity and viscous characteristic length of Double-layered ...
An ultrasonic reflectivity method of evaluating the acoustic parameters of porous materials saturate...
An ultrasonic reflectivity method of evaluating the acoustic parameters of porous materials saturate...
Ultrasonic reflection and transmission measurements on saturated, plane-parallel, poroelastic slabs ...
Ultrasonic reflection and transmission measurements on saturated, plane-parallel, poroelastic slabs ...
Ultrasonic reflection and transmission measurements on saturated, plane-parallel, poroelastic slabs ...
This paper provides an experimental validation of the Pride-Lafarge [6,7] model of the acoustic wave...
This paper provides a temporal model of the direct and inverse scattering problem for the propagatio...
This paper provides a temporal model of the direct and inverse scattering problem for the propagatio...
This paper concerns a time-domain model of transient wave propagation in double-layered porous mater...
This paper concerns a time-domain model of transient wave propagation in double-layered porous mater...
International audienceThis paper concerns the ultrasonic characterization of air-saturated double-la...
Direct and inverse scattering problem in air filled porous materials is solved. A simple ultrasonic ...
International audienceWe propose an indirect method for measuring simultaneously acoustic parameters...
Direct and inverse scattering problem in air filled porous materials is solved. A simple ultrasonic ...
International audienceMeasurement of tortuosity and viscous characteristic length of Double-layered ...
An ultrasonic reflectivity method of evaluating the acoustic parameters of porous materials saturate...
An ultrasonic reflectivity method of evaluating the acoustic parameters of porous materials saturate...
Ultrasonic reflection and transmission measurements on saturated, plane-parallel, poroelastic slabs ...
Ultrasonic reflection and transmission measurements on saturated, plane-parallel, poroelastic slabs ...
Ultrasonic reflection and transmission measurements on saturated, plane-parallel, poroelastic slabs ...
This paper provides an experimental validation of the Pride-Lafarge [6,7] model of the acoustic wave...