We have modeled numerically the seismic response of a poroelastic inclusion with properties applicable to an oil reservoir that interacts with an ambient wavefield. The model includes wave-induced fluid flow caused by pressure differences between mesoscopic-scale (i.e., in the order of centimeters to meters) heterogeneities. We used a viscoelastic approximation on the macroscopic scale to implement the attenuation and dispersion resulting from this mesoscopic-scale theory in numerical simulations of wave propagation on the kilometer scale. This upscaling method includes finite-element modeling of wave-induced fluid flow to determine effective seismic properties of the poroelastic media, such as attenuation of P- and S-waves. The fitted, equ...
International audienceWe consider a linear poroelastic material filled with a linear viscoelastic so...
Fluid flow in the Earth's crust plays an important role in a number of geological processes. In rela...
The presence of fluids in the pore space of rocks causes wave attenuation and dispersion by the mech...
simulation of ambient seismic wavefield modification caused by pore-fluid effects in an oil reservoi
At seismic frequencies, wave-induced fluid flow is a major cause of P-wave attenuation in partially ...
International audience[1] In porous rocks saturated in patches by two immiscible fluids, seismic com...
Accurate numerical modeling tools are of practical importance for understanding of seismic wave prop...
One major cause of elastic wave attenuation in heterogeneous porous media is wave-induced flow of th...
The theory of poroelasticity describes the mechanics of fluid saturated deformable porous solids. Po...
The present work analyzes seismic attenuation due to wave-induced flow in complex poroelastic materi...
In this paper, we present a computational method to simulate wave propagation in porous rocks satura...
The presence of fluids in the pore space of rocks causes wave attenuation and dispersion by the mech...
In their interesting paper the authors present a new ad-vanced approach to the simulation of seismic...
In this project, we link fluid flow simulation results to time-lapse seismic through rock physics an...
We simulate the propagation of ultrasonic waves in heterogeneous poroviscoelastic media saturated by...
International audienceWe consider a linear poroelastic material filled with a linear viscoelastic so...
Fluid flow in the Earth's crust plays an important role in a number of geological processes. In rela...
The presence of fluids in the pore space of rocks causes wave attenuation and dispersion by the mech...
simulation of ambient seismic wavefield modification caused by pore-fluid effects in an oil reservoi
At seismic frequencies, wave-induced fluid flow is a major cause of P-wave attenuation in partially ...
International audience[1] In porous rocks saturated in patches by two immiscible fluids, seismic com...
Accurate numerical modeling tools are of practical importance for understanding of seismic wave prop...
One major cause of elastic wave attenuation in heterogeneous porous media is wave-induced flow of th...
The theory of poroelasticity describes the mechanics of fluid saturated deformable porous solids. Po...
The present work analyzes seismic attenuation due to wave-induced flow in complex poroelastic materi...
In this paper, we present a computational method to simulate wave propagation in porous rocks satura...
The presence of fluids in the pore space of rocks causes wave attenuation and dispersion by the mech...
In their interesting paper the authors present a new ad-vanced approach to the simulation of seismic...
In this project, we link fluid flow simulation results to time-lapse seismic through rock physics an...
We simulate the propagation of ultrasonic waves in heterogeneous poroviscoelastic media saturated by...
International audienceWe consider a linear poroelastic material filled with a linear viscoelastic so...
Fluid flow in the Earth's crust plays an important role in a number of geological processes. In rela...
The presence of fluids in the pore space of rocks causes wave attenuation and dispersion by the mech...