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首页> 外文期刊>Bulletin of the Seismological Society of America >Control factors of spatial variation of long-period strong ground motions in the Yufutsu sedimentary basin, Hokkaido, during the M-w 8.0 2003 Tokachi-oki, Japan, earthquake
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Control factors of spatial variation of long-period strong ground motions in the Yufutsu sedimentary basin, Hokkaido, during the M-w 8.0 2003 Tokachi-oki, Japan, earthquake

机译:2003年10月8日在日本十胜木地震中北海道由富津沉积盆地中长期强地面运动的空间变化控制因子

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摘要

We successfully reproduced important features of long-period (7 to 8 sec), large-amplitude ground motions observed in the Yufutsu basin, Hokkaido, during the M-w 8.0 2003 Tokachi-oki, Japan, earthquake through numerical simulation of wave propagation. Recordings from the dense nationwide strong ground motion networks in Japan demonstrated significant spatial variation of long-period strong ground motions within the Yufutsu basin and revealed that the long-period shaking in the Tomakomai western port was the strongest of all the sites within the basin. In interpreting or predicting long-period strong ground motions in sedimentary basins, the importance of deep basin structures, such as the depth of bedrock with an S-wave velocity over 3 km/sec has been emphasized. However, the characteristics of the underground structure model of the Yufutsu basin that explain the observations indicate that thickness of near-surface (< 1 km) soft sediments rather than bedrock depth governs the spatial variation of amplitudes of the long-period (7 to 8 sec) shaking in the basin. These findings suggest the importance of the detailed models of soft near-surface deposits as well as deeper basin structures such as bedrock depth for a better understanding of long-period strong ground motions in deep sedimentary basins.
机译:通过波传播的数值模拟,我们成功地再现了北海由布津盆地在2003年日本十日市M-w 8.0地震中观测到的长周期(7至8秒)大振幅地震动的重要特征。日本密集的全国强地面运动网络的记录显示,由布津盆地内长期强地面运动的空间变化很大,并且揭示了the小牧西部港口的长期震动是盆地内所有站点中最强的。在解释或预测沉积盆地中的长期强地面运动时,强调了深盆地结构的重要性,例如S波速度超过3 km / sec的基岩深度。然而,由布津盆地地下结构模型的特征解释了观测结果,表明近地表(<1 km)软沉积物的厚度而非基岩深度决定了长周期振幅的空间变化(7至8)。秒)在盆中摇晃。这些发现表明,为了更好地了解深部沉积盆地中的长期强地面运动,软近地表沉积物以及深部盆地结构(如基岩深度)的详细模型的重要性。

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