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Coseismic velocity change in and around the focal region of the 2008 Iwate-Miyagi Nairiku earthquake

机译:2008年岩手-宫城县纳里库地震震源区及其附近的同震速度变化

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The 2008 M7.2 Iwate-Miyagi Nairiku earthquake occurred in NE Japan where dense seismic networks exist. Using the data from these networks, we determined the coseismic seismic velocity change associated with this earthquake by two different methods: ambient noise interferometry and vertical array interferometry of coda wave. The purpose of this article is to reveal the spatial distribution and the cause of the velocity change by integrating these two approaches. Ambient noise interferometry revealed a coseismic velocity decrease of Rayleigh wave by 0.1-0.5% at 0.25-0.5 Hz. We also estimated the spatial distribution of the velocity change by a tomographic inversion. The velocity decrease was distributed in and around the focal area. In the second method, we applied cross-correlation analysis to coda waves observed by the KiK-net vertical array. We detected a shear velocity decrease of approximately 5% in shallow layers up to a few hundred meters depth. Quantitative comparison of the two results reveals that the 5% shear velocity decrease in shallow layers can explain the 0.1-0.5% decrease of Rayleigh wave velocity. The distribution of the velocity decrease is similar to that of the strong ground motion and the static stress change. However, a significant velocity increase is not observed in the compression area, where a velocity increase is expected. Based on the observations, we consider that the primary factor affecting the velocity change is damage in shallow layers due to strong motion. The effect of the static stress change might be masked by the larger effect of the strong motion.
机译:2008年岩手-宫城县Nairiku M7.2地震发生在日本东北部,那里存在密集的地震网络。利用来自这些网络的数据,我们通过两种不同的方法确定了与该地震有关的同震地震速度变化:环境噪声干涉法和尾波的垂直阵列干涉法。本文的目的是通过整合这两种方法来揭示空间分布和速度变化的原因。环境噪声干涉测量法显示在0.25-0.5 Hz处,瑞利波的同震速度降低了0.1-0.5%。我们还通过层析反演估计了速度变化的空间分布。速度下降分布在焦点区域内和周围。在第二种方法中,我们将互相关分析应用于通过KiK-net垂直阵列观察到的尾波。我们检测到了几百米深的浅层剪切速度下降了约5%。两种结果的定量比较表明,浅层剪切速度下降5%可解释瑞利波速度下降0.1-0.5%。速度下降的分布类似于强地面运动和静应力变化的分布。但是,在压缩区域中未观察到明显的速度增加,在压缩区域中预期会有速度增加。基于这些观察,我们认为影响速度变化的主要因素是由于强烈运动导致的浅层破坏。静态应力变化的影响可能被强运动的较大影响所掩盖。

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