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首页> 外文期刊>Bulletin of the Seismological Society of America >Numerical Study of Ground-Motion Differences between Buried-Rupturing and Surface-Rupturing Earthquakes
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Numerical Study of Ground-Motion Differences between Buried-Rupturing and Surface-Rupturing Earthquakes

机译:埋藏破裂与地震地震地面差异的数值研究

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摘要

Recent ground-motion observations suggest that surface-rupturing earthquakes generate weaker near-fault ground motion than buried earthquakes. This difference is significant in the period range of 0.3-3 sec. Contributing factors to this phenomenon may include the effect of fault zone weakness at shallow depth on rupture dynamics and rupture directivity during earthquakes. We present results from numerical experiments of spontaneous dynamic rupture and near-source ground-motion simulations of surface rupturing and buried earthquakes and discuss mechanisms for the observed ground-motion differences. The surface-rupturing earthquake is modeled with a shallow zone of 5 km thickness containing areas of negative stress drop (within the framework of the slip-weakening friction model) and lower rigidity. Surface-rupturing models with this weak zone generate lower amplitude ground velocity than do models without this modification. Observed ground-motion differences between surface and buried events are qualitatively reproduced by imposing higher stress drop in the buried earthquakes than in the surface earthquakes, combined with introducing a deeper rupture initiation for buried rupture, enhancing upward rupture-directivity effects for the latter events. In the context of our simplified model parameterization, then, the observed differences in ground motion could arise from combined effects of relative weakness of the shallow layer of faults, the relatively larger stress drops of buried ruptures, and a tendency of near-fault sites to record strong upward directivity from buried ruptures.
机译:最近的地面运动观察表明,表面破裂地震产生的地震比埋地地震更弱。该差异在0.3-3秒的期间范围内显着。这种现象的贡献因素可能包括故障区虚弱在浅层深度对地震时破裂动力学和破裂方向性的影响。我们呈现出在表面破裂和埋地地震的自发动态破裂和近源地面运动模拟的数值实验中的结果,并讨论了观察到的地面运动差异的机制。表面破裂地震采用5公里厚的浅区,含有负应力下降区域(在滑动弱化摩擦模型的框架内)和较低的刚性。表面破裂模型具有这种弱区的模型,而不是在没有这种修改的情况下进行较低的幅度接地速度。观察到表面和埋地事件之间的地面运动差异通过在埋地地震中施加更高的压力下降而不是在地表地震中进行了定性再现,并结合引入掩埋破裂的更深的破裂启动,增强了后一种事件的向上破裂效应效应。在我们简化模型参数化的上下文中,从浅层的浅层的相对弱点的组合效果,掩埋破裂的相对较大的应力下降以及近故障部位的倾向记录埋地破裂的强烈向上的方向性。

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