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Ocean-Bottom Strong-Motion Observations in the Nankai Trough by the DONET Real-Time Monitoring System

机译:DONET实时监测系统对南开海槽海底强运动的观测

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摘要

The deployment of real-time permanent ocean-bottom seismic and tsunami observatories is significant for disaster mitigation and prevention during the occurrence of large subduction earthquakes near trough areas. On April 1, 2016, a moderate-sized suboceanic earthquake occurred beneath Dense Oceanfloor Network System for Earthquakes and Tsunamis (DONET) stations that were recently deployed in deep ocean-bottom areas near the Nankai Trough in southwest Japan. P-waves arrived at the ocean-bottom station within 4 s of the origin time, which was 6 and 13 s earlier than the arrival of P- and S-waves at a land station in the coastal area, respectively; this implies earlier detection of strong motion than at land stations. However, the waveforms are amplified by sediment layers and even contaminated with acceleration offsets at some stations, which would lead to overestimations during source investigations. Such amplification and offset did not occur at a borehole station connected to DONET. The amplifications caused by the sediment layers and the offset were found to have a considerable spatial variation, not only between the DONET stations and land and borehole stations but also among the DONET stations, implying that the amplitude evaluation could be unstable. Therefore, procedures for correcting or suppressing the amplification and offset problem are required for conducting waveform analyses, such as magnitude estimations and source modeling, during large subduction earthquakes.
机译:在槽区附近发生大的俯冲地震时,实时海底永久地震和海啸实时观测站的部署对减灾和预防具有重要意义。 2016年4月1日,稠密的海底地震和海啸网络系统(DONET)站下发生了中型次洋地震,该地震系统最近部署在日本西南部南海海槽附近的深海底地区。 P波在起源时间的4 s内到达海底台站,分别比P波和S波在沿海地区的陆上站到达要早6 s和13 s;这意味着要比在陆地站更早地检测到强烈的运动。但是,这些波形会被沉积物层放大,甚至在某些站点上被加速度偏移所污染,这将导致源调查期间的高估。在连接到DONET的钻孔站上不会发生这种放大和偏移。发现沉积物层和偏移引起的放大作用不仅在DONET站之间,陆上和钻孔站之间而且在DONET站之间都有很大的空间变化,这意味着幅度评估可能是不稳定的。因此,在大的俯冲地震中进行波形分析,例如震级估算和震源模拟,需要校正或抑制放大和偏移问题的程序。

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