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Dynamic Rupture Modeling of the Transition from Thrust to Strike-Slip Motion in the 2002 Denali Fault Earthquake, Alaska

机译:2002年阿拉斯加迪纳利断层地震从推力到走滑运动过渡的动态破裂模型

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摘要

We use three-dimensional dynamic (spontaneous) rupture models to investigate the nearly simultaneous ruptures of the Susitna Glacier thrust fault and the Denali strike-slip fault. With the 1957 M_w 8.3 Gobi-Altay, Mongolia, earthquake as the only other well-documented case of significant, nearly simultaneous rupture of both thrust and strike-slip faults, this feature of the 2002 Denali fault earthquake provides a unique opportunity to investigate the mechanisms responsible for development of these large, complex events. We find that the geometry of the faults and the orientation of the regional stress field caused slip on the Susitna Glacier fault to load the Denali fault. Several different stress orientations with oblique right-lateral motion on the Susitna Glacier fault replicate the triggering of rupture on the Denali fault about 10 sec after the rupture nucleates on the Susitna Glacier fault. However, generating slip directions compatible with measured surface offsets and kinematic source inversions requires perturbing the stress orientation from that determined with focal mechanisms of regional events. Adjusting the vertical component of the principal stress tensor for the regional stress field so that it is more consistent with a mixture of strike-slip and reverse faulting significantly improves the fit of the slip-rake angles to the data. Rotating the maximum horizontal compressive stress direction westward appears to improve the fit even further.
机译:我们使用三维动态(自发)破裂模型来研究Susitna冰川逆冲断层和Denali走滑断层的几乎同时破裂。在蒙古唯一的1957年M_w 8.3戈壁-阿勒泰地震中,逆冲断层和走滑断层均几乎同时破裂,这是唯一有据可查的案例,2002年Denali断层地震的这一特征提供了一个独特的机会来调查地震这些大型复杂事件的发展机制。我们发现,断层的几何形状和区域应力场的方向引起了Susitna冰川断层的滑动,从而给Denali断层加载。在Susitna冰川断层上成核后约10秒钟左右,在Susitna冰川断层上有几种不同的应力取向以及右斜向运动复制了Denali断层的破裂触发。但是,要生成与测得的表面偏移和运动学源反演兼容的滑移方向,就需要根据区域事件的震源机制确定的应力方向来扰动应力方向。调整局部应力场的主应力张量的垂直分量,使其与走滑和反向断层的混合更加一致,这显着改善了滑前角与数据的拟合度。向西旋转最大水平压缩应力方向似乎可以进一步改善拟合度。

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