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首页> 外文期刊>Earth, planets and space: EPS >Long-period ground motion simulation in the Kinki area during the M-J 7.1 foreshock of the 2004 off the Kii peninsula earthquakes
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Long-period ground motion simulation in the Kinki area during the M-J 7.1 foreshock of the 2004 off the Kii peninsula earthquakes

机译:2004年基伊半岛地震在M-J 7.1级地震前在近畿地区进行的长期地面运动模拟

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Long-period (5-20 s) ground motion simulations in the Kinki area during the M-J 7.1 foreshock of the 2004 off the Kii peninsula earthquakes are performed. We construct a three-dimensional underground structure model that includes the Source region and Osaka basin area to confirm propagation-path effects of crustal structure on long-period ground motions. Finite difference (FD) Simulations by our three-dimensional underground structure model agree well with long-period observed ground motions at several rock sites in the Kinki area. We found that a sedimentary wed-e structure along the Nankai trough amplifies and elongates long-period ground motions from this event. We also examine the effect of source depth for this event by comparing the observed with synthetic waveforms. These results suggest that precise modeling of the shallower parts of the underground structure, such as the sedimentary wedge, are quite important for long-period ground motion Simulation of the hypothetical Nankai and Tonankai earthquakes.
机译:在基伊半岛地震2004年的M-J 7.1级前地震中,在近畿地区进行了长时间(5-20​​ s)地面运动模拟。我们构建了一个包含源区和大阪盆地地区的三维地下结构模型,以确认地壳结构对长周期地震动的传播路径影响。我们的三维地下结构模型进行的有限差分(FD)模拟与近畿地区近几处岩石站点的长期观测地面运动非常吻合。我们发现,沿南海海槽的沉积型楔形构造放大并拉长了该事件的长期地面运动。我们还通过将观察到的波形与合成波形进行比较来检查该事件的源深度的影响。这些结果表明,对假设的南海地震和南海地震的长期地面运动模拟,对地下结构的较浅部分(如沉积楔)进行精确建模非常重要。

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