4.7 Article

Volumetric components in the earthquake source related to fluid injection and stress state

期刊

GEOPHYSICAL RESEARCH LETTERS
卷 44, 期 2, 页码 800-809

出版社

AMER GEOPHYSICAL UNION
DOI: 10.1002/2016GL071963

关键词

non-double-couple components; induced seismicity; geothermal; stress state; tensile opening; pore pressure

资金

  1. Helmholtz Association

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We investigate source processes of fluid-induced seismicity from The Geysers geothermal reservoir in California to determine their relation with hydraulic operations and improve the corresponding seismic hazard estimates. Analysis of 869 well-constrained full moment tensors (M-w 0.8-3.5) reveals significant non-double-couple components (>25%) for about 65% of the events. Volumetric deformation is governed by cumulative injection rates with larger non-double-couple components observed near the wells and during high injection periods. Source mechanisms are magnitude dependent and vary significantly between faulting regimes. Normal faulting events (M-w<2) reveal substantial volumetric components indicating dilatancy in contrast to strike-slip events that have a dominant double-couple source. Volumetric components indicating closure of cracks in the source region are mostly found for reverse faulting events with M-w>2.5. Our results imply that source processes and magnitudes of fluid-induced seismic events are strongly affected by the hydraulic operations, the reservoir stress state, and the faulting regime.

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