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Simulations of long-period ground motions from a large earthquake using finite rupture modeling and the ambient seismic field

机译:使用有限破裂模型和环境地震场模拟大地震的长周期地震动

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Long-period ground motions generated by large earthquakes slowly attenuate with distance and can be significantly amplified by local velocity structures even at large distances. We take advantage of the wave propagation information carried by the ambient seismic field to simulate the long-period ground motions of the 2008 M-w 6.9 Iwate-Miyagi Nairiku earthquake, which occurred in the Tohoku region, Japan. We extract Green's functions between pairs of stations by regarding seismometers located in the vicinity of the main shock fault plane as virtual sources and others as receivers. We calibrate the amplitude of the extracted Green's functions using records of a M-w 5.0 aftershock with a reverse-faulting focal mechanism similar to that of the main shock. We use scaling relations between small and large earthquakes to construct several finite fault models that are used together with the extracted Green's functions to simulate the ground motions of the main shock. Among the different models, a uniform finite source model with a rupture velocity of 1.95 km/s combined with the Green's functions extracted using one virtual source station located at the center of the fault plane yields the best fit between the simulated and observed long-period ground motions. This study demonstrates the potential of the ambient seismic field combined with finite source modeling to assess the seismic hazard related to long-period ground motions that could be generated by forthcoming large earthquakes.
机译:大地震产生的长周期地震动会随着距离的增加而缓慢衰减,即使在较远的距离处,局部速度结构也能将其显着放大。我们利用周围地震场携带的波传播信息来模拟在日本东北地区发生的2008年M-w 6.9岩手-宫城县Nairiku地震的长周期地震动。通过将位于主震断层平面附近的地震仪作为虚拟源,将其他地震仪作为接收器,来提取站点对之间的格林函数。我们使用M-w 5.0余震的记录来校准提取的格林函数的振幅,该记录具有与主震相似的反向断层震源机制。我们使用大小地震之间的比例关系来构造几个有限断层模型,这些模型与提取的格林函数一起使用,以模拟主震的地震动。在不同的模型中,破裂速度为1.95 km / s的统一有限源模型,结合使用位于断层平面中心的一个虚拟源站提取的格林函数,可以在模拟和观测的长周期之间实现最佳拟合地面运动。这项研究表明,结合有限源模型来评估周围地震场的潜力,可以评估与即将发生大地震可能产生的长期地面运动有关的地震危险。

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