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首页> 外文期刊>Bulletin of the Seismological Society of America >Modeling the Effects of Source and Path Heterogeneity on Ground Motions of Great Earthquakes on the Cascadia Subduction Zone Using 3D Simulations
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Modeling the Effects of Source and Path Heterogeneity on Ground Motions of Great Earthquakes on the Cascadia Subduction Zone Using 3D Simulations

机译:使用3D模拟对源和路径异质性对卡斯卡迪亚俯冲带上大地震地面运动的影响进行建模

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We ran finite-difference earthquake simulations for great subduction zone earthquakes in Cascadia to model the effects of source and path heterogeneity for the purpose of improving strong-motion predictions. We developed a rupture model for large subduction zone earthquakes based on a k~(-2) slip spectrum and scale-dependent rise times by representing the slip distribution as the sum of normal modes of a vibrating membrane. Finite source and path effects were important in determining the distribution of strong motions through the locations of the hypocenter, subevents, and crustal structures like sedimentary basins. Some regions in Cascadia appear to be at greater risk than others during an event due to the geometry of the Cascadia fault zone relative to the coast and populated regions. The southern Oregon coast appears to have increased risk because it is closer to the locked zone of the Cascadia fault than other coastal areas and is also in the path of directivity amplification from any rupture propagating north to south in that part of the subduction zone, and the basins in the Puget Sound area are efficiently amplified by both north and south propagating ruptures off the coast of western Washington. We find that the median spectral accelerations at 5 s period from the simulations are similar to that of the Zhao et al. (2006) ground-motion prediction equation, although our simulations predict higher amplitudes near the region of greatest slip and in the sedimentary basins, such as the Seattle basin.
机译:我们对卡斯卡迪亚的大俯冲带地震进行了有限差分地震模拟,以模拟震源和路径异质性的影响,以改善强运动预测。我们通过将滑移分布表示为振动膜正常模式的总和,建立了一个基于k〜(-2)滑移谱和比例依赖的上升时间的大俯冲带地震破裂模型。有限的源和路径效应对于确定震源,子事件和沉积盆地等地壳结构的位置确定强运动的分布很重要。在事件期间,由于卡斯卡迪亚断层带相对于海岸和人口稠密地区的几何形状,卡斯卡迪亚的某些地区似乎比其他地区面临更大的风险。俄勒冈南部海岸的风险似乎增加了,因为它比其他沿海地区更靠近卡斯卡迪亚断层的锁定区,并且还在俯冲带那部分从北向南传播的任何破裂中,方向性都在放大。普吉特海湾地区的盆地被华盛顿西部沿岸的南北传播破裂有效放大。我们发现,从模拟得出的5 s周期的中值频谱加速度与Zhao等人的相似。 (2006年)地面运动预测方程,尽管我们的模拟预测最大滑动区域附近和沉积盆地(如西雅图盆地)中的振幅更高。

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