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首页> 外文期刊>Marine and Petroleum Geology >Subsurface faults inferred from reflection seismic, earthquakes, and sedimentological relationships: Implications for induced seismicity in Alberta, Canada
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Subsurface faults inferred from reflection seismic, earthquakes, and sedimentological relationships: Implications for induced seismicity in Alberta, Canada

机译:从反射地震,地震,地震和沉积物关系推断的地下断层:对加拿大艾伯塔省诱发地震性的影响

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Given the recent induced seismic activity in Alberta, identification of subsurface faults and areas of structural complexity has become increasingly important in improving our understanding of the controls on induced seismic events. Using a 3D geological model supplemented with 2D and 3D reflection seismic data, several basement-bounded and basement-rooted faults, which extend upward and into the Devonian strata, are identified in areas coincident with increased seismic activity. The presence of faults in the study area was confirmed through a statistically significant correlation of high-quality seismic event data from historical and recent (1970-2016) induced earthquakes in Alberta to the edge of the Devonian-aged Swan Hills platform. Along with the identification of faults using reflection seismic and earthquake hypocenter data, a review of the role of preexisting structure on depositional patterns that has been previously used to infer deep structure in this area, is also presented in this study. Several pre-existing extensional and/or transtensional style faults in the deeper strata and shallow basement of the study area are consistent with structure influencing the sedimentation of the overlying stratigraphy. Therefore, a better understanding of genetic fault-reef associations and the relationship to overlying strata may aid in identification of fault locations, style, and orientation. Considering the advancement of proper avoidance strategies during the planning stages of unconventional resource development or storage, this paper demonstrates the use of geological knowledge and relationships to identify areas comprising faults that may be prone to reactivation.
机译:鉴于最近艾伯塔省的诱导地震活动,鉴定地下断层和结构复杂性的区域在提高我们对诱导地震事件的控制的理解方面越来越重要。使用补充有2D和3D反射地震数据的3D地质模型,在与增加的地震活动增加一致的区域内鉴定了若干基底界和地下根故障,该地下室延伸到德文人的地层。通过历史和近期(1970-2016)诱导地震的高质量地震事件数据的统计学上显着相关,确认了研究区内的故障存在于艾伯塔省的地震到德文郡老年天鹅山平台的边缘。随着使用反射地震和地震效率数据的故障的识别,还在本研究中介绍了先前用于推断该区域的深层结构的沉积图案的预先存在的结构的作用。在研究区的深层地层和浅地下室的几种预先存在的延伸和/或静音样式故障与影响覆盖地层的沉降的结构一致。因此,更好地了解遗传故障礁关联和与覆盖地层的关系可能有助于识别故障位置,风格和方向。考虑到在规划阶段在规划规划阶段的规划阶段,展示了地质知识和关系的使用,以确定包括可重新激活的故障的区域。

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