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- W4386003404 abstract "Increasing concerns have been raised about hydraulic fracturing (HF) due to its capability of triggering damaging earthquakes. Although there is a common consensus that local geological settings play significant roles in these earthquakes, to what extent they influence earthquake locations and magnitudes within shale gas fields remains unclear. Here we conduct body-wave tomography inversion, earthquake relocation, and structural analysis in the Weiyuan Shale Gas Field (WSGF), China. We find that structural deformation of the Weiyuan anticline and the newly revealed basement rift constrained the location and magnitudes of ML ≥ 3.0 earthquakes in the WSGF. We have also observed that ML ≥ 3.0 earthquakes are more prone to occur in low-velocity or velocity transition zones that are geologically susceptible. Based on high-resolution earthquake locations, we use aftershocks to delineate the fault plane of the largest Mw5.0 in the WSGF. Our results show the Mw5.0 event nucleated in the basement rift and ruptured a fault plane strikes along northeast. Our results shed light on mitigating destructive earthquakes in shale gas fields by identifying geological susceptibility zones using structural deformation simulation and high-resolution tomography methods." @default.
- W4386003404 created "2023-08-20" @default.
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- W4386003404 date "2023-10-01" @default.
- W4386003404 modified "2023-10-12" @default.
- W4386003404 title "Structural constraints of induced earthquakes in the Weiyuan Shale Gas Field revealed by high-resolution body-wave tomography and earthquake relocation" @default.
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- W4386003404 doi "https://doi.org/10.1016/j.tecto.2023.230007" @default.
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