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Gravitational body forces focus North American intraplate earthquakes

机译:地心引力集中于北美板内地震

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Earthquakes far from tectonic plate boundaries generally exploit ancient faults, but not all intraplate faults are equally active. The North American Great Plains exemplify such intraplate earthquake localization, with both natural and induced seismicity generally clustered in discrete zones. Here we use seismic velocity, gravity and topography to generate a 3D lithospheric density model of the region; subsequent finite-element modelling shows that seismicity focuses in regions of high-gravity-derived deviatoric stress. Furthermore, predicted principal stress directions generally align with those observed independently in earthquake moment tensors and borehole breakouts. Body forces therefore appear to control the state of stress and thus the location and style of intraplate earthquakes in the central United States with no influence from mantle convection or crustal weakness necessary. These results show that mapping where gravitational body forces encourage seismicity is crucial to understanding and appraising intraplate seismic hazard.
机译:远离构造板块边界的地震通常利用古老的断裂,但并非所有板内断裂都同样活跃。北美大平原是板内地震局部化的典型例子,自然地震和诱发地震通常都聚集在离散区域中。在这里,我们使用地震速度,重力和地形来生成该区域的3D岩石圈密度模型。随后的有限元建模表明,地震活动集中在高重力衍生的偏应力区域。此外,预测的主应力方向通常与在地震矩张量和井眼破裂中独立观测到的方向一致。因此,在美国中部,体力似乎可以控制应力状态,从而控制板内地震的位置和方式,而不受地幔对流或地壳弱化的影响。这些结果表明,在重力作用下激发地震活动的位置进行制图对于理解和评估板内地震危险性至关重要。

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