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  Identifying geological structures through microseismic cluster and burst analyses complementing active seismic interpretation

Dichiarante, A. M., Langet, N., Bauer, R. A., Goertz-Allmann, B. P., Williams-Stroud, S. C., Kühn, D., Oye, V., Greenberg, S. E., Dando, B. D. E. (2021): Identifying geological structures through microseismic cluster and burst analyses complementing active seismic interpretation. - Tectonophysics, 820, 229107.
https://doi.org/10.1016/j.tecto.2021.229107

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Dichiarante, A. M.1, Autor
Langet, N.1, Autor
Bauer, R. A.1, Autor
Goertz-Allmann, B. P.1, Autor
Williams-Stroud, S. C.1, Autor
Kühn, Daniela2, Autor              
Oye, V.1, Autor
Greenberg, S. E.1, Autor
Dando, B. D. E.1, Autor
Affiliations:
1External Organizations, ou_persistent22              
22.1 Physics of Earthquakes and Volcanoes, 2.0 Geophysics, Departments, GFZ Publication Database, Deutsches GeoForschungsZentrum, ou_146029              

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Schlagwörter: Induced seismicity; Seismicity bursts;Fractures; Stress state; Basement
 Zusammenfassung: At the Decatur carbon capture and storage site (IL, USA) CO2 has been injected from 2011–2014 and from 2017 to present near the base of the Lower Mt. Simon Sandstone saline reservoir, resulting in microseismicity. Microseismicity is mainly located in the basement and distributed in distinct spatial clusters. The lack of significant impedance contrasts within the basement makes the interpretation of active-source seismic reflection data challenging, however, recent reprocessing allowed to resolve faults above and at the top of the basement. These faults generally do not coincide with the location of microseismic events and their continuation to the general depth of the seismic events cannot be assumed. This paper shows how the interpretation of the microseismicity can complement structural interpretations of active-source seismic reflection data. In particular, we analyze clusters and bursts (abrupt increases) of microseismicity, identify unresolved, smaller-scale weaknesses and extract statistical parameters. These parameters allow comparisons with the interpreted faults, and with fracture sets intercepted by boreholes. During injection at the Decatur site, the injection pressure was kept far below fracture pressure, nevertheless, seismic events were induced and spread far beyond the expected extent of the CO2 plume. We argue that local stress transfers related to the CO2 injection reactivated pre-existing fractures within the critically stressed basement. Finally, we conducted a slip tendency analysis for faults interpreted from active seismic, selected cluster, bursts and nodal planes from focal mechanisms to determine if the interpreted structures are optimally oriented with respect to the stress regime. Our results suggest that the orientation of fractures close to the injection well, generally shows slight deviations from the optimal orientation for slip. This might indicate either slight local deviations of the maximum horizontal stress azimuth from the average direction used in the analysis, or the lack of optimally oriented fractures at this location.

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Sprache(n): eng - Englisch
 Datum: 20212021
 Publikationsstatus: Final veröffentlicht
 Seiten: -
 Ort, Verlag, Ausgabe: -
 Inhaltsverzeichnis: -
 Art der Begutachtung: -
 Identifikatoren: DOI: 10.1016/j.tecto.2021.229107
GFZPOF: p4 T8 Georesources
GFZPOFWEITERE: p4 T3 Restless Earth
OATYPE: Hybrid Open Access
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Titel: Tectonophysics
Genre der Quelle: Zeitschrift, SCI, Scopus
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Seiten: - Band / Heft: 820 Artikelnummer: 229107 Start- / Endseite: - Identifikator: Anderer: 0040-1951
Anderer: 1879-3266
CoNE: https://gfzpublic.gfz-potsdam.de/cone/journals/resource/journals470
Publisher: Elsevier