4.5 Article

Ground-motion prediction equations for induced seismicity in the main anticline and main syncline, Upper Silesian Coal Basin, Poland

Journal

ACTA GEOPHYSICA
Volume 60, Issue 2, Pages 410-425

Publisher

SPRINGER INTERNATIONAL PUBLISHING AG
DOI: 10.2478/s11600-011-0070-9

Keywords

induced seismicity; ground-motion model; relative amplification; Upper Silesian Coal Basin

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The purpose of the research was to determine parameters of ground-motion models for two areas characterized by considerable induced seismicity and different geology. Fifty-nine events collected from surface seismological stations of coal mine Bielszowice (at the Main Anticline, South Poland) and 144 events from coal mine Ziemowit (at the Main Syncline, South Poland) were used for computation. For both areas, simple ground-motion prediction equations (GMPEs) without site effects were derived, but the model was acceptable only for Bielszowice area. The GMPE was calculated once again for Ziemowit, but this time we took into consideration the amplification coefficient, which significantly improved the model solution. Finally, the theoretical value of amplification was calculated. Knowing that the amplification is associated with subsurface layers, we used three different models of overburden: (i) with Quaternary sediments only, (ii) with a complex of Quaternary-Tertiary sediments, and (iii) with a complex of Quaternary-Tertiary-Triassic sediments and Carboniferous as a basement. Usually, the amplification of vibrations appears in the Quaternary sediments. However, theoretical calculations of amplification were consistent with the results obtained from GMPE when a rigid Carboniferous substratum was applied.

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