Attenuation and dispersion of compressional seismic waves in inhomogeneous, fluid-saturated porous media are modeled in the framework of wave propagation in continuous random media. Two dominant attenuation mechanisms are analyzed in detail. First, attenuation due to wave-induced flow, an intrinsic attenuation mechanism where a passing seismic wave introduces localized movements of the viscous fluid which are accompanied by internal friction. Second, attenuation due to scattering, the so-called apparent attenuation where ordinary elastic scattering is responsible for a redistribution of wavefield energy in space and time. Despite the fact that both attenuation mechanisms have a quite different physical nature, the theory of wave propagation...
Seismic attenuation mechanisms receive increasing attention for the characterization of fractured fo...
Wave-induced fluid flow (WIFF) due to the presence of mesoscopic heterogeneities is considered as on...
International audienceOver the past decade, significant efforts have been made to acurately model th...
A detailed analysis of the relationship between elastic waves in inhomogeneous, porous media and the...
One major cause of elastic wave attenuation in heterogeneous porous media is wave-induced flow of th...
In inhomogeneous porous media, the mechanism of wave-induced fluid flow causes significant attenuati...
Fluid patches in partially saturated poroelastic medium at mesoscopic-scale may cause significant at...
Most natural porous rocks have heterogeneities at nearly all scales. Heterogeneities of mesoscopic s...
Oscillatory fluid movements in heterogeneous porous rocks induced by seismic waves cause dissipation...
Seismic waves propagating in porous rocks saturated with two immiscible fluids can be strongly atten...
The propagation of elastic waves is modelled in media with a random distribution of fluid-filled cir...
Heterogeneous porous media such as hydrocarbon reservoir rocks are effectively described as anisotro...
International audienceModeling and understanding the seismic attenuation due to wave induced flow is...
International audienceModeling and understanding the seismic attenuation due to wave induced flow is...
The present work analyzes seismic attenuation due to wave-induced flow in complex poroelastic materi...
Seismic attenuation mechanisms receive increasing attention for the characterization of fractured fo...
Wave-induced fluid flow (WIFF) due to the presence of mesoscopic heterogeneities is considered as on...
International audienceOver the past decade, significant efforts have been made to acurately model th...
A detailed analysis of the relationship between elastic waves in inhomogeneous, porous media and the...
One major cause of elastic wave attenuation in heterogeneous porous media is wave-induced flow of th...
In inhomogeneous porous media, the mechanism of wave-induced fluid flow causes significant attenuati...
Fluid patches in partially saturated poroelastic medium at mesoscopic-scale may cause significant at...
Most natural porous rocks have heterogeneities at nearly all scales. Heterogeneities of mesoscopic s...
Oscillatory fluid movements in heterogeneous porous rocks induced by seismic waves cause dissipation...
Seismic waves propagating in porous rocks saturated with two immiscible fluids can be strongly atten...
The propagation of elastic waves is modelled in media with a random distribution of fluid-filled cir...
Heterogeneous porous media such as hydrocarbon reservoir rocks are effectively described as anisotro...
International audienceModeling and understanding the seismic attenuation due to wave induced flow is...
International audienceModeling and understanding the seismic attenuation due to wave induced flow is...
The present work analyzes seismic attenuation due to wave-induced flow in complex poroelastic materi...
Seismic attenuation mechanisms receive increasing attention for the characterization of fractured fo...
Wave-induced fluid flow (WIFF) due to the presence of mesoscopic heterogeneities is considered as on...
International audienceOver the past decade, significant efforts have been made to acurately model th...