Comparison of stress-associated coda attenuation and intrinsic attenuation from ultrasonic measurements

Astronomy and Astrophysics – Astronomy

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Fourier Analysis, Body Waves, Seismic Attenuation, Wave Scattering And Diffraction, Wave Propagation

Scientific paper

Seismic wave attenuation has been proved to be an indicator of stress changes in rocks. Seismic coda, as a superposition of incoherent scattered waves, is known to reflect small-scale random heterogeneities in the Earth medium. It contains information on stress changes of the Earth's interior, as a result of changes in the physical state of materials. In this paper, we measure ultrasonic properties of rocks under different effective stresses to study the effect of pore-pressure induced stress changes on coda attenuation as a combination of intrinsic attenuation and scattering attenuation. We investigate the stress-associated coda attenuation quality factors QPC and QSC as a function of frequencies and characterize its scale dependence on stress variations in rocks by comparing with the intrinsic attenuation quality factors QP and QS, calculated from ultrasonic measurements. Comparisons of the P- and S-coda attenuations versus frequencies under different effective stresses demonstrate that the scattering of the S-coda is much stronger because of its shorter wavelength. The intrinsic and coda attenuations versus stress variations present quite different non-linear features, where QP, QS, QPC and QSC increase with increasing effective stress, but QPC and QSC show a greater sensitivity to pore pressure than QP and QS.

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