Acoustics of Porous Media |
Contents
NOMENCLATURE | 1 |
Introduction | 9 |
Chapter 2 | 49 |
1 Wave propagation in a nonisotropic elastic medium | 95 |
EXPERIMENTAL TECHNIQUES | 145 |
2 Measurements using vibrating systems standing waves | 161 |
Chapter 5 | 175 |
Chapter 6 | 245 |
medium | 258 |
SOME APPLICATIONS | 299 |
| 315 | |
| 325 | |
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Common terms and phrases
acoustic analyzed angle of incidence angular frequency attenuation behavior Berea Berea sandstone Biot Biot's theory Bourbié bulk modulus capillary Chapter complex modulus compressional wave confining pressure Constant Q model corresponding curves decreases defined density depends displacement dissipation elastic elastic modulus energy equation example experimental Fontainebleau sandstone function geometry granite group velocity hence homogeneous increase Ko/K limestone linear liquid macroscopic Massillon sandstone matrix mechanisms methods non-wetting fluid normal observed obtained P-wave P₁ wave P₂ parameters permeability phase velocity Poisson's ratio pore space porosity porous medium problem quality factor radius Rayleigh wave reflection coefficient resonant bar rocks sample saturated porous saturating fluid Section shows signal slow wave solid Stoneley wave temperature tensor tortuosity transmission ultrasonic measurements variations vector velocities and attenuations Velocity km/s viscoelastic viscosity Water saturation wave propagation wave velocity wavelength



