Spatial heterogeneity of hydrocarbon reservoirs causes significant attenuation and dispersion of seismic waves due to wave-induced flow of the pore fluid between more compliant to less compliant areas. This paper investigates the interaction between a plane elastic wave in a poroelastic medium with a spherical inhomogeneity of another porous material. The behaviour of both the inclusion and the background medium is described by the low frequency variant of Biot's equations of poroelasticity with the standard boundary conditions at the inclusion surface and for the inclusion size much smaller than the wavelength of the fast compressional wave. The scattering problem is formulated as a series expansion of displacements expressed in the spheri...
. Efforts to extend the theory of poroelasticity to semilinear and nonlinear elastic response, to pa...
A detailed analysis of the relationship between elastic waves in inhomogeneous, porous media and the...
We consider periodically heterogeneous fluid-saturated poroelastic media described by the Biot model...
Most natural porous rocks have heterogeneities at nearly all scales. Heterogeneities of mesoscopic s...
The scattering of plane transverse waves by a spherical inclusion embedded in an infinite poroelasti...
Fluid patches in partially saturated poroelastic medium at mesoscopic-scale may cause significant at...
The scattering of plane transverse waves by a spherical inclusion embedded in an infinite poroelasti...
Acoustic wave scattering from random porous media is formulated from the Biot theory, which describe...
Physical properties of many natural and man-made materials can be modelled using the concept of poro...
Natural fractures in hydrocarbon reservoirs can cause significant seismic attenuation and dispersion...
Propagation of the slow Biot wave is investigated within the low-frequency range. For the first time...
Wave propagation in porous media is of interest in various diversified areas of science and engineer...
One major cause of elastic wave attenuation in heterogeneous porous media is wave-induced flow of th...
Biot's theory when applied to homogeneous media (involving the macroscopic flow mechanism) cannot ex...
Analysis of compression wave propagation through a high-permeability layer in a homogeneous poroelas...
. Efforts to extend the theory of poroelasticity to semilinear and nonlinear elastic response, to pa...
A detailed analysis of the relationship between elastic waves in inhomogeneous, porous media and the...
We consider periodically heterogeneous fluid-saturated poroelastic media described by the Biot model...
Most natural porous rocks have heterogeneities at nearly all scales. Heterogeneities of mesoscopic s...
The scattering of plane transverse waves by a spherical inclusion embedded in an infinite poroelasti...
Fluid patches in partially saturated poroelastic medium at mesoscopic-scale may cause significant at...
The scattering of plane transverse waves by a spherical inclusion embedded in an infinite poroelasti...
Acoustic wave scattering from random porous media is formulated from the Biot theory, which describe...
Physical properties of many natural and man-made materials can be modelled using the concept of poro...
Natural fractures in hydrocarbon reservoirs can cause significant seismic attenuation and dispersion...
Propagation of the slow Biot wave is investigated within the low-frequency range. For the first time...
Wave propagation in porous media is of interest in various diversified areas of science and engineer...
One major cause of elastic wave attenuation in heterogeneous porous media is wave-induced flow of th...
Biot's theory when applied to homogeneous media (involving the macroscopic flow mechanism) cannot ex...
Analysis of compression wave propagation through a high-permeability layer in a homogeneous poroelas...
. Efforts to extend the theory of poroelasticity to semilinear and nonlinear elastic response, to pa...
A detailed analysis of the relationship between elastic waves in inhomogeneous, porous media and the...
We consider periodically heterogeneous fluid-saturated poroelastic media described by the Biot model...