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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Relationship between structures, stress and seismicity in the Charlevoix seismic zone revealed by 3-D geomechanical models: Implications for the seismotectonics of continental interiors
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Relationship between structures, stress and seismicity in the Charlevoix seismic zone revealed by 3-D geomechanical models: Implications for the seismotectonics of continental interiors

机译:3-D地质力学模型揭示的沙勒沃瓦地震带结构,应力与地震活动之间的关系:对大陆内部地震构造的启示

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The Charlevoix seismic zone in the St. Lawrence valley of Quebec is the most active in eastern Canada. The structurally complex region comprises a series of subparallel steeply dipping Iapetan rift faults, superimposed by a 350 Ma meteorite impact structure, resulting in a heavily faulted volume. The elongate seismic zone runs through the crater parallel to the rift. Most large events localize outside the crater and are consistent with slip along the rift faults, whereas background seismicity primarily occurs within the volume of rock bounded by the rift faults within and beneath the crater. The interaction between rift and crater faults is explored using the three-dimensional stress analysis code FLAC3D. The rift faults are represented by frictional discontinuities, and the crater is represented by a bowl-shaped elastic volume of reduced modulus. Differential stresses are slowly built up from boundary displacements similar to tectonic loading. Results indicate that weakening the rift faults produces a stress increase in the region of the crater bounded by the faults. This causes a decrease in stability of optimally oriented faults and may explain the localization of low-level seismicity. Additionally, slip distribution along the rift faults shows that large events localize at the perimeter of the crater and produce focal mechanisms with P axes oblique to the applied stress field, consistent with historic large earthquakes. It is speculated that similar systematic rotation of focal mechanism P axes may be expected along other intraplate rift zones, raising a potential caveat for the use of focal mechanisms for stress estimation in continental interiors.
机译:魁北克圣劳伦斯河谷的夏洛瓦地震带是加拿大东部最活跃的地震带。结构复杂的区域包括一系列次平行的陡倾的伊帕坦裂谷断层,并由350 Ma陨石撞击结构叠加,形成了严重的断层体。细长的地震带平行于裂谷穿过火山口。大多数大型事件都位于火山口外部,并且与沿裂谷断层的滑动相一致,而背景地震活动主要发生在受火山口内部和下方裂谷断层限制的岩石内部。使用三维应力分析代码FLAC3D探索了裂谷和火山口断层之间的相互作用。裂隙断层以摩擦间断为代表,而火山口则以模量减小的碗状弹性体表示。类似于构造荷载的边界位移会逐渐建立起差异应力。结果表明,弱化裂谷断层会在受断层限制的火山口区域内产生应力增加。这会导致最佳定向断层的稳定性下降,并可能解释了低层地震活动的局部性。此外,沿裂谷断层的滑移分布表明,大型事件位于火山口的外围,并产生了具有与所施加的应力场倾斜的P轴的震源机制,这与历史上的大地震一致。据推测,沿其他板内裂谷带可能会发生类似的震源机制P轴系统旋转,这为利用震源机制估算大陆内部应力提出了潜在的警告。

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