首页> 外文期刊>Bulletin of the Seismological Society of America >Source Rupture Process of the 2004 Chuetsu, Mid-Niigata Prefecture, Japan, Earthquake Inferred from Waveform Inversion with Dense Strong-Motion Data
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Source Rupture Process of the 2004 Chuetsu, Mid-Niigata Prefecture, Japan, Earthquake Inferred from Waveform Inversion with Dense Strong-Motion Data

机译:日本新泻中部地区2004年Chuetsu的震源破裂过程,该地震是通过利用密集的强运动数据进行波形反演得出的

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摘要

The kinematic source rupture process of the 2004 Chuetsu, mid-Niigata prefecture, Japan, earthquake, is estimated from strong-motion data by the linear waveform inversion method. In order to develop appropriate Green’s functions, one-dimensional velocity structure models for each station are constructed by modeling the aftershock waveforms. The estimated top of the bedrock is deeper at the western side of the fault and relatively shallow at the eastern side. This tendency coincides with other investigations of seismic tomography and microtremor array observations. The obtained source model shows large slips in the vicinity of the hypocenter. The reverse slipping rupture originated from the deeper part of the fault and propagated toward the up-dip and southwest directions. The near-surface slip is small. Two tests are demonstrated to check the stability of the obtained source model. The first test examines the effects of the number of available stations on the solution, and the second test examines how the difference in the target waveform type affects the solution. The number of stations affects the variation of slip amount, and more than 12 stations appear to be sufficient to obtain a stable solution in this case. The difference in the target wave type in the data set does not significantly affect the solution if the number of stations is sufficient and the Green’s functions are well calibrated. The model obtained using calibrated velocity structure models shows clear image of high-slip area compared to the model obtained using a single velocity structure model.
机译:通过线性波形反演方法,根据强运动 数据估算了日本新泻中部2004年中部地震的运动源破裂过程。为了开发适合格林的 功能,通过对 余震波形建模,为每个测站建立一维速度 结构模型。基岩的估计顶部在断层的西侧更深,而在东侧则相对较浅。这种趋势与地震层析成像和微震阵列观测的其他研究 相吻合。 获得的源模型显示在 震中附近较大的滑动。反向滑动破裂起源于断层的较深部分,并向着上倾方向和西南方向传播。近表面滑动很小。演示了两个测试 来检查获得的source 模型的稳定性。第一个测试检查 可用工作站数量对解决方案的影响,第二个测试检查 目标波形类型的差异如何影响解决方案。 工位数量会影响滑移量的变化, 超过12个工位似乎足以获得 的稳定解。如果站数足够大且格林的 函数为,则数据集中目标 波浪类型的差异不会显着影响 解决方案校准良好。与使用单速度结构 模型获得的模型相比,使用校准的 速度结构模型获得的模型显示了高滑动区域 清晰的图像。 sup>

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    Kimiyuki Asano; Tomotaka Iwata;

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    Disaster Prevention Research Institute, Kyoto University, Gokasho, Uji, Kyoto 611-0011, Japan k-asano@egmdpri01.dpri.kyoto-u.ac.jp iwata@egmdpri01.dpri.kyoto-u.ac.jp;

    Disaster Prevention Research Institute, Kyoto University, Gokasho, Uji, Kyoto 611-0011, Japan k-asano@egmdpri01.dpri.kyoto-u.ac.jp iwata@egmdpri01.dpri.kyoto-u.ac.jp;

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