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首页> 外文期刊>Pure and Applied Geophysics >Tsunami Simulation by Tuned Seismic Source Inversion for the Great 2011 Tohoku Earthquake
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Tsunami Simulation by Tuned Seismic Source Inversion for the Great 2011 Tohoku Earthquake

机译:Tsunami通过调整地震源反演来模拟伟大的2011 Tohoku地震

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Seismic and tsunami waves were the most destructive phenomena during the 2011 Tohoku earthquake. Here we ask whether the same source model can be used to obtain equally good simulations of the observed strong ground motions and the tsunami waves. If so, we could use the same source modeling technique for predictions of both tsunami waves and strong ground motions. Long-period (20-200 s) strong ground motion data were inverted to determine the rupture process of the 2011 Tohoku earthquake. The inverted slip distribution shows that large-slip area was extended around 150 km to north and 120 km to south from hypocenter and stretched between hypocenter and the trench. We estimated two slip models: without and with additional constraints. The first relatively rough slip model reproduced short-period tsunami wave (4-5 min). Due to better constraint by data of other kind and being relatively smooth the second model reproduces long-period tsunami wave (15-25 min), as well as keeps good fit of the short-period tsunami, although short-period tsunami becomes underestimated. We used a fully nonlinear Boussinesq water wave model to model tsunami propagation, and used the results to tune the slip model. Finally, we developed a tuned slip model that combines the features of both the first and the second slip models and reproduced both the short- and long-period tsunami waves, while maintaining good fit of the seismic waveforms.
机译:地震和海啸波是2011年东路地震期间最具破坏性的现象。在这里,我们询问相同的源模型是否可用于获得观察到的强大地面运动和海啸波的同样良好的模拟。如果是这样,我们可以使用相同的源模拟技术来预测海啸波和强大的地面运动。长期(20-200岁)强大的地面运动数据被反转以确定2011年Tohoku地震的破裂过程。倒立的滑动分配表明,大滑块距离北左右约150公里,距离斜视的南部120公里,伸展在斜静脉和沟槽之间。我们估计了两个滑动模型:没有额外的约束。第一个相对粗糙的滑动模型再现短周期海啸波(4-5分钟)。由于通过其他类型的数据和相对平滑的数据更好的限制,第二模型再现长周期海啸波(15-25分钟),并且保持短时间海啸的良好拟合,尽管短时间海啸变得低估了。我们使用完全非线性Boussinesq水波模型来模拟海啸传播,并使用结果调整滑动模型。最后,我们开发了一种调谐的滑动模型,结合了第一和第二滑动模型的特征,并再现了短期和长期海啸波,同时保持良好的地震波形的良好拟合。

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