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Real-Time Tsunami Prediction System Based on Seafloor Observatory Data Applied to the Inland Sea, Japan

机译:基于海底观测资料的海啸实时预报系统在日本内陆的应用

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The damage and loss of life caused by tsunamis can be reduced by timely warnings, which predict the arrival time and maximum height of tsunamis, to support evacuations and other mitigating actions. We have developed a real-time tsunami prediction system based on data from the Dense Oceanfloor Network system for Earthquakes and Tsunamis (DONET) that has been implemented in some local governments along the Pacific coast of Japan. The system generates estimates of tsunami arrival times and the height, inundation areas, and worst case using selected fault rupture models. The main objective of this paper is to show the possibility of applying the above system for a complicated topography area, and we report a successful application of the system in Sakaide, a city on the Shikoku coast of the Inland Sea, using a simulated great plate-boundary earthquake in the Nankai Trough. The simulated tsunami propagates to Sakaide by complicated routes between several islands. According to calculated tsunami waveforms of 1,506 cases, waveforms of tsunamis propagating to the Inland Sea have a relatively uniform frequency, regardless of the magnitude of the causative event, after running through the narrow straits in the Inland Sea. At the same time, waves are amplified as they pass between the islands of Shodoshima and Shikoku by an interaction with reflected waves. These effects are compatible with this prediction system, and we confirmed that our predicted tsunami is consistent with the final result from a model of a magnitude 9 Nankai Trough earthquake.
机译:可以通过及时的警告来减少海啸造成的破坏和生命损失,预警可以预测海啸的到来时间和最大高度,以支持撤离和其他缓解行动。我们已经根据密集的海底地震和海啸网络(DONET)系统中的数据开发了实时海啸预测系统,该系统已在日本太平洋沿岸的一些地方政府中实施。该系统使用选定的断层破裂模型生成海啸到达时间,高度,淹没区域和最坏情况的估计值。本文的主要目的是展示将​​上述系统用于复杂地形区域的可能性,并且我们使用模拟的大板块报告了该系统在内陆四国沿岸城市坂出的成功应用南海海槽边界地震。模拟的海啸通过一些岛屿之间的复杂路线传播至坂出。根据计算出的1,506例海啸波形,传播到内海的海啸波形经过内陆狭窄海峡后,无论其致病程度如何,其频率都相对均匀。同时,通过与反射波的相互作用,波在小豆岛和四国的岛屿之间通过时,波会被放大。这些影响与该预测系统是兼容的,并且我们确认我们的预测海啸与9级南海海槽地震的最终结果一致。

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