Quantitatively assessing attenuation and dispersion of elastic-wave velocities in partially saturated reservoir is difficult because of its sensitivity to fluid distribution. We conducted experiments on homogeneous Indiana limestone samples, partially saturated by two methods: drying and imbibition which lead to different fluid distribution for a given saturation. Forced oscillations (from 0.004 to 100 Hz) and ultrasonic (1 MHz) measurements were done under confining pressure to measure the change of elastic moduli with frequency and their attenuation. Our measurements show that compressional (P-)velocities are strongly sensitive to the sample’s saturation method. For high saturations (above 80%), obtained by drainage, compressional velocit...
Carbonate rocks are important hydrocarbon reservoir rocks with complex textures and petrophysical pr...
Carbonate rocks are important hydrocarbon reservoir rocks with complex textures and petrophysical pr...
Mesoscopic flow is a significant mechanism of fluid-related seismic attenuation in partiallysaturate...
Quantitatively assessing attenuation and dispersion of elastic-wave velocities in partially saturate...
Quantitatively assessing attenuation and dispersion of elastic-wave velocities in partially saturate...
International audienceQuantitatively assessing attenuation and dispersion of elastic-wave velocities...
International audienceQuantitatively assessing attenuation and dispersion of elastic-wave velocities...
Quantitatively assessing attenuation and dispersion of elastic-wave velocities in partially saturate...
The frequency dependence of seismic properties of fully saturated rocks can be related to wave-induc...
In fully-saturated rock and at ultrasonic frequencies, the microscopic squirt flow induced between t...
The presence of fluids in the pore space of rocks causes wave attenuation and dispersion by the mech...
Carbonate rocks are important hydrocarbon reservoir rocks with complex textures and petrophysical pr...
A significant portion of the world's hydrocarbon reserves are found in carbonate reservoirs, but ana...
Quantitative interpretation of time-lapse seismic data requires knowledge of the relationship betwee...
International audienceQuantitatively assessing seismic attenuation caused by fluid pressure diffusio...
Carbonate rocks are important hydrocarbon reservoir rocks with complex textures and petrophysical pr...
Carbonate rocks are important hydrocarbon reservoir rocks with complex textures and petrophysical pr...
Mesoscopic flow is a significant mechanism of fluid-related seismic attenuation in partiallysaturate...
Quantitatively assessing attenuation and dispersion of elastic-wave velocities in partially saturate...
Quantitatively assessing attenuation and dispersion of elastic-wave velocities in partially saturate...
International audienceQuantitatively assessing attenuation and dispersion of elastic-wave velocities...
International audienceQuantitatively assessing attenuation and dispersion of elastic-wave velocities...
Quantitatively assessing attenuation and dispersion of elastic-wave velocities in partially saturate...
The frequency dependence of seismic properties of fully saturated rocks can be related to wave-induc...
In fully-saturated rock and at ultrasonic frequencies, the microscopic squirt flow induced between t...
The presence of fluids in the pore space of rocks causes wave attenuation and dispersion by the mech...
Carbonate rocks are important hydrocarbon reservoir rocks with complex textures and petrophysical pr...
A significant portion of the world's hydrocarbon reserves are found in carbonate reservoirs, but ana...
Quantitative interpretation of time-lapse seismic data requires knowledge of the relationship betwee...
International audienceQuantitatively assessing seismic attenuation caused by fluid pressure diffusio...
Carbonate rocks are important hydrocarbon reservoir rocks with complex textures and petrophysical pr...
Carbonate rocks are important hydrocarbon reservoir rocks with complex textures and petrophysical pr...
Mesoscopic flow is a significant mechanism of fluid-related seismic attenuation in partiallysaturate...