AbstractA linear dynamic model of fully saturated porous media with local (either microscopic or mesoscopic) heterogeneities is developed within the context of Biot’s theory of poroelasticity. Viscoporoelastic behavior associated with local fluid flow is characterized by the notion of the dynamic compatibility condition on the interface between the solid and the fluid. Complex, frequency-dependent material parameters characterizing the viscoporoelasticity are derived. The complex properties can be obtained through determining the quasi-static poroelastic parameters, the properties of individual constituents, and the relaxation time of the dynamic compatibility condition on the interface. Relationships among various quasi-static poroelastic ...
The prediction of relationships between elastic wave velocities in a porous medium and the properti...
The analytical transient acoustic solution and dispersion characteristics for the double-porosity mo...
Modeling of sound propagation in porous media requires the knowledge of several intrinsic material p...
AbstractA linear dynamic model of fully saturated porous media with local (either microscopic or mes...
This work addresses the propagation of acoustic waves in porous media. The theoretical developments ...
It is well known that Biot theory (Biot, 1956;1962) of porous-media acoustics ignores all wave-induc...
We consider acoustic waves in fluid-saturated periodic media with large contrasts in the permeabilit...
International audienceAs acoustic waves propagate through fluid-filled porous materials possessing h...
A detailed analysis of the relationship between elastic waves in inhomogeneous, porous media and the...
In this paper, a homogenization method is proposed to obtain the parameters of Biot¿s poroelastic th...
In this paper, a homogenization method is proposed to obtain the parameters of Biot¿s poroelastic th...
In this paper, a homogenization method is proposed to obtain the parameters of Biot¿s poroelastic th...
In this paper, a homogenization method is proposed to obtain the parameters of Biot¿s poroelastic th...
Fluid-saturated porous media are well-known for their manifold attenuation mechanismscaused by wave-...
AbstractThe macroscopic description of the dynamical behavior of a porous solid composed of two nonw...
The prediction of relationships between elastic wave velocities in a porous medium and the properti...
The analytical transient acoustic solution and dispersion characteristics for the double-porosity mo...
Modeling of sound propagation in porous media requires the knowledge of several intrinsic material p...
AbstractA linear dynamic model of fully saturated porous media with local (either microscopic or mes...
This work addresses the propagation of acoustic waves in porous media. The theoretical developments ...
It is well known that Biot theory (Biot, 1956;1962) of porous-media acoustics ignores all wave-induc...
We consider acoustic waves in fluid-saturated periodic media with large contrasts in the permeabilit...
International audienceAs acoustic waves propagate through fluid-filled porous materials possessing h...
A detailed analysis of the relationship between elastic waves in inhomogeneous, porous media and the...
In this paper, a homogenization method is proposed to obtain the parameters of Biot¿s poroelastic th...
In this paper, a homogenization method is proposed to obtain the parameters of Biot¿s poroelastic th...
In this paper, a homogenization method is proposed to obtain the parameters of Biot¿s poroelastic th...
In this paper, a homogenization method is proposed to obtain the parameters of Biot¿s poroelastic th...
Fluid-saturated porous media are well-known for their manifold attenuation mechanismscaused by wave-...
AbstractThe macroscopic description of the dynamical behavior of a porous solid composed of two nonw...
The prediction of relationships between elastic wave velocities in a porous medium and the properti...
The analytical transient acoustic solution and dispersion characteristics for the double-porosity mo...
Modeling of sound propagation in porous media requires the knowledge of several intrinsic material p...