Title of article :
Acoustical characterization of fluid-saturated porous media with local heterogeneities: Theory and application
Author/Authors :
Changfu Wei، نويسنده , , Kanthasamy K. Muraleetharan، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Abstract :
A 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 parameters are developed. It is shown that local fluid flow mechanism is significant
only in the porous media with local heterogeneities. The relaxation time of the compatibility condition on the
interface depends upon the details of local structure of porous media that control local fluid pressure diffusion. The
new model is used to describe the velocity dispersion and attenuation in fully saturated porous media. The proposed
model provides a theoretical framework to simulate the acoustical behavior of fully saturated porous media over a wide
range of frequencies without making any explicit assumption about the structure of local heterogeneities.
Keywords :
Porous media , Local fluid flow , Viscoelasticity , attenuation , Velocity dispersion , Constitutive behavior
Journal title :
International Journal of Solids and Structures
Journal title :
International Journal of Solids and Structures