The triggering and spreading of volumetric waves in soils, namely pressure (P) and shear (S) waves, developing from a point source of a dynamic load, are analyzed. Wave polarization and shear wave splitting are innovatively reproduced via a three-dimensional Finite Element research code upgraded to account for fast dynamic regimes in fully saturated porous media. The mathematical–numerical model adopts a u-v-p formulation enhanced by introducing Taylor–Hood mixed finite elements and the stability features of the solution are considered by analyzing different implemented time integration strategies. Particularly, the phenomena have been studied and reconstructed by numerically generating different types of medium anisotropy accounting for (i...
From the analysis of a multi-component seismic data from vertical seismic profiling (VSP) for freque...
In this paper we extend the 3-D finite difference method to simulate wave propagations in an anisotr...
Wave-induced fluid flow generates a dominant attenuation mechanism in porous media. It consists of e...
Shear wave splitting is a well-known method for indication of orientation, radius, and length of fra...
Predicting seismic velocities in isotropic fluid-saturated rocks is commonly done using the isotropi...
We present the largest dataset of anisotropic high‐quality parameters (~12,000) for the Amatrice‐Vis...
Development of a hydrocarbon reservoir requires information about the type of fluid that saturates t...
Shear-wave singularities in systems of anisotropic symmetry are comparatively well known, but it has...
This book presents the theory of waves propagation in a fluid-saturated porous medium (a Biot medium...
Heterogeneous porous media such as hydrocarbon reservoir rocks are effectively described as anisotro...
Seismic anisotropy, defined as the variation of seismic velocity with propagation direction, often a...
In an earlier paper it was already suggested that the anisotropy of the tortuosity yields essential...
In the last three years, we developed, tested and improved an automatic analysis code to calculate t...
In this paper, we present dynamic equations of elastic wave propagations, the Galerkin variational e...
Jaime Ramos-Martı́nez, Andrey A. Ortega‡, and George A. McMechan Splitting of zero-offset reflected ...
From the analysis of a multi-component seismic data from vertical seismic profiling (VSP) for freque...
In this paper we extend the 3-D finite difference method to simulate wave propagations in an anisotr...
Wave-induced fluid flow generates a dominant attenuation mechanism in porous media. It consists of e...
Shear wave splitting is a well-known method for indication of orientation, radius, and length of fra...
Predicting seismic velocities in isotropic fluid-saturated rocks is commonly done using the isotropi...
We present the largest dataset of anisotropic high‐quality parameters (~12,000) for the Amatrice‐Vis...
Development of a hydrocarbon reservoir requires information about the type of fluid that saturates t...
Shear-wave singularities in systems of anisotropic symmetry are comparatively well known, but it has...
This book presents the theory of waves propagation in a fluid-saturated porous medium (a Biot medium...
Heterogeneous porous media such as hydrocarbon reservoir rocks are effectively described as anisotro...
Seismic anisotropy, defined as the variation of seismic velocity with propagation direction, often a...
In an earlier paper it was already suggested that the anisotropy of the tortuosity yields essential...
In the last three years, we developed, tested and improved an automatic analysis code to calculate t...
In this paper, we present dynamic equations of elastic wave propagations, the Galerkin variational e...
Jaime Ramos-Martı́nez, Andrey A. Ortega‡, and George A. McMechan Splitting of zero-offset reflected ...
From the analysis of a multi-component seismic data from vertical seismic profiling (VSP) for freque...
In this paper we extend the 3-D finite difference method to simulate wave propagations in an anisotr...
Wave-induced fluid flow generates a dominant attenuation mechanism in porous media. It consists of e...