P- and S velocity structure in the Groningen gas reservoir from noise interferometry

Publication date

2017-12-16

Authors

Zhou, W.
Paulssen, H.ORCID 0000-0003-2799-7288ISNI 0000000398325278

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

No license information available

Abstract

Noise interferometry has proven to be a powerful tool to image seismic structure. In this study we used data from 10 geophones located in a borehole at ∼3 km depth within the Groningen gas reservoir in the Netherlands. The continuous data cross correlations show that noise predominantly comes in from above. The observed daily and weekly variations further indicate that the noise has an anthropogenic origin. The direct P wave emerges from the stacked vertical component cross correlations with frequencies up to 80 Hz and the direct S wave is retrieved from the horizontal components with frequencies up to 50 Hz. The measured intergeophone travel times were used to retrieve the P and S velocity structure along the borehole, and a good agreement was found with well log data. In addition, from the S wave polarizations, we determined azimuthal anisotropy with a fast direction of N65°W±18° and an estimated magnitude of (4±2)%. The fast polarization direction corresponds to the present direction of maximum horizontal stress measured at nearby boreholes but is also similar to the estimated paleostress direction.

Keywords

Citation

Zhou, W & Paulssen, H 2017, 'P- and S velocity structure in the Groningen gas reservoir from noise interferometry', Geophysical Research Letters, vol. 44, no. 23, pp. 11785-11791. https://doi.org/10.1002/2017GL075592