Low‐frequency anisotropy in fractured and layered media
Author:
Affiliation:
1. Norwegian University of Science and Technology Trondheim Norway
2. Jilin University Changchun China
Funder
China Sponsorship Council
Publisher
Wiley
Subject
Geochemistry and Petrology,Geophysics
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1111/1365-2478.12833
Reference30 articles.
1. Long-wave elastic anisotropy produced by horizontal layering
2. Characteristic frequencies of seismic attenuation due to wave-induced fluid flow in fractured porous media
3. Frequency-dependent anisotropy due to meso-scale fractures in the presence of equant porosity
4. Attenuation and dispersion of compressional waves in fluid‐filled porous rocks with partial gas saturation (White model)—Part I: Biot theory
5. Attenuation and dispersion of compressional waves in fluid‐filled porous rocks with partial gas saturation (White model)—Part II: Results
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1. Frequency-dependent velocities and attenuations in fluid-saturated rocks: Fractures aligned in isotropic medium with random pore shape;GEOPHYSICS;2023-12-11
2. Seismic characterization of fractured reservoirs with elastic impedance difference versus angle and azimuth: A low-frequency poroelasticity perspective;GEOPHYSICS;2021-07-01
3. Frequency-dependent anisotropy in partially saturated porous rock with multiple sets of mesoscale fractures;Geophysical Journal International;2021-05-24
4. Frequency‐dependent PP and PS reflection coefficients in fractured media;Geophysical Prospecting;2019-10-21
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