A fractional-order wave equation is established and solved for a space of three dimensions using spherical coordinates. An equivalent fluid model is used in which the acoustic wave propagates only in the fluid saturating the porous medium; this model is a special case of Biot’s theory obtained by the symmetry of the Lagrangian (invariance by translation and rotation). The basic solution of the wave equation is obtained in the time domain by analytically calculating Green’s function of the porous medium and using the properties of the Laplace transforms. Fractional derivatives are used to describe, in the time domain, the fluid–structure interactions, which are of the inertial, viscous, and thermal kind. The solution to the fractional-order ...
This book systematically presents solutions to the linear time-fractional diffusion-wave equation. I...
This paper provides a temporal model of the direct and inverse scattering problem for the propagatio...
In this paper, a fractional generalization of the wave equation that describes propagation of damped...
International audienceA fractional-order wave equation is established and solved for a space of thre...
International audienceThis study concerns the ultrasonic wave propagation in fractional dimensional ...
International audienceIn this paper, the influence of the transverse wave on sound propagation in a ...
This paper starts by summarizing the basic equations of a theoretical model, recentely published by ...
In this paper direct and inverse time-domain scattering of ultrasonic pulses from a rigid, homogeneo...
International audienceA temporal model based on the Biot theory is developed to describe the transie...
International audienceThis paper provides a time domain model for the propagation of transient ultra...
Wave propagation of acoustic waves in porous media is considered. The medium is assumed to have a ri...
Fellah, Wave motion 2 This paper provides an analytical solution in time domain for the propagation ...
5 pagesInternational audienceThis paper provides a temporal model for the propagation of transient u...
In this paper, we present a fractal (self-similar) model of acoustic propagation in a porous materia...
Fractional calculus, in allowing integrals and derivatives of any positive order (the term "fraction...
This book systematically presents solutions to the linear time-fractional diffusion-wave equation. I...
This paper provides a temporal model of the direct and inverse scattering problem for the propagatio...
In this paper, a fractional generalization of the wave equation that describes propagation of damped...
International audienceA fractional-order wave equation is established and solved for a space of thre...
International audienceThis study concerns the ultrasonic wave propagation in fractional dimensional ...
International audienceIn this paper, the influence of the transverse wave on sound propagation in a ...
This paper starts by summarizing the basic equations of a theoretical model, recentely published by ...
In this paper direct and inverse time-domain scattering of ultrasonic pulses from a rigid, homogeneo...
International audienceA temporal model based on the Biot theory is developed to describe the transie...
International audienceThis paper provides a time domain model for the propagation of transient ultra...
Wave propagation of acoustic waves in porous media is considered. The medium is assumed to have a ri...
Fellah, Wave motion 2 This paper provides an analytical solution in time domain for the propagation ...
5 pagesInternational audienceThis paper provides a temporal model for the propagation of transient u...
In this paper, we present a fractal (self-similar) model of acoustic propagation in a porous materia...
Fractional calculus, in allowing integrals and derivatives of any positive order (the term "fraction...
This book systematically presents solutions to the linear time-fractional diffusion-wave equation. I...
This paper provides a temporal model of the direct and inverse scattering problem for the propagatio...
In this paper, a fractional generalization of the wave equation that describes propagation of damped...