Publications des scientifiques de l'IRD

Hobiger M., Cornou Cécile, Bard P. Y., Le Bihan N., Imperatori W. (2016). Analysis of seismic waves crossing the Santa Clara Valley using the three-component MUSIQUE array algorithm. Geophysical Journal International, 207 (1), p. 439-456. ISSN 0956-540X.

Titre du document
Analysis of seismic waves crossing the Santa Clara Valley using the three-component MUSIQUE array algorithm
Année de publication
2016
Type de document
Article référencé dans le Web of Science WOS:000384651200029
Auteurs
Hobiger M., Cornou Cécile, Bard P. Y., Le Bihan N., Imperatori W.
Source
Geophysical Journal International, 2016, 207 (1), p. 439-456 ISSN 0956-540X
We introduce the MUSIQUE algorithm and apply it to seismic wavefield recordings in California. The algorithm is designed to analyse seismic signals recorded by arrays of three-component seismic sensors. It is based on the MUSIC and the quaternion-MUSIC algorithms. In a first step, the MUSIC algorithm is applied in order to estimate the backazimuth and velocity of incident seismic waves and to discriminate between Love and possible Rayleigh waves. In a second step, the polarization parameters of possible Rayleigh waves are analysed using quaternion-MUSIC, distinguishing retrograde and prograde Rayleigh waves and determining their ellipticity. In this study, we apply the MUSIQUE algorithm to seismic wavefield recordings of the San Jose Dense Seismic Array. This array has been installed in 1999 in the Evergreen Basin, a sedimentary basin in the Eastern Santa Clara Valley. The analysis includes 22 regional earthquakes with epicentres between 40 and 600 km distant from the array and covering different backazimuths with respect to the array. The azimuthal distribution and the energy partition of the different surface wave types are analysed. Love waves dominate the wavefield for the vast majority of the events. For close events in the north, the wavefield is dominated by the first harmonic mode of Love waves, for farther events, the fundamental mode dominates. The energy distribution is different for earthquakes occurring northwest and southeast of the array. In both cases, the waves crossing the array are mostly arriving from the respective hemicycle. However, scattered Love waves arriving from the south can be seen for all earthquakes. Combining the information of all events, it is possible to retrieve the Love wave dispersion curves of the fundamental and the first harmonic mode. The particle motion of the fundamental mode of Rayleigh waves is retrograde and for the first harmonic mode, it is prograde. For both modes, we can also retrieve dispersion and ellipticity curves. Wave motion simulations for two earthquakes are in good agreement with the real data results and confirm the identification of the wave scattering formations to the south of the array, which generate the scattered Love waves visible for all earthquakes.
Plan de classement
Géophysique interne [066]
Description Géographique
ETATS UNIS ; CALIFORNIE
Localisation
Fonds IRD [F B010068301]
Identifiant IRD
fdi:010068301
Contact