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首页> 外文期刊>Natural Hazards and Earth System Sciences Discussions >Strategy to design the sea-level monitoring networks for small tsunamigenic oceanic basins: the Western Mediterranean case
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Strategy to design the sea-level monitoring networks for small tsunamigenic oceanic basins: the Western Mediterranean case

机译:策略设计小海洋盆地海平监测网络:西部地中海案例

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The 26 December 2004 Indian Ocean tsunami triggered a number of international and national initiatives aimed at establishing modern, reliable and robust tsunami warning systems. In addition to the seismic network for initial warning, the main component of the monitoring system is the sea level network. Networks of coastal tide gages and tsunameters are implemented to detect the tsunami after the occurrence of a large earthquake, to confirm or refute the tsunami occurrence. Large oceans tsunami monitoring currently in place in the Pacific and in implementation in the Indian Ocean will be able to detect tsunamis in 1 h. But due to the very short time of waves propagation, in general less than 1 h, a tsunami monitoring system in a smaller basin requires a denser network located close to the seismic zones. A methodology is proposed based on the modeling of tsunami travel time and waveform, and on the estimation of the delay of transmission to design the location and the spacing of the stations. In the case of Western Mediterranean, we demonstrate that a network of around 17 coastal tide gages and 13 tsunameters located at 50 km along the shore is required to detect and measure nearly all tsunamis generated on the Northern coasts of Africa.
机译:2004年12月26日印度洋海啸引发了一些旨在建立现代,可靠和强大的海啸预警系统的国际和国家举措。除了用于初始警告的地震网络之外,监测系统的主要组成部分是海平网络。在发生大地震发生后,实施了沿海潮汐测级和海啸和海啸网络以检测海啸,以确认或反驳海啸发生。目前在太平洋和在印度洋中实施的大洋海啸监测将能够在1小时内检测海啸。但由于波浪传播的时间很短,一般小于1小时,较小盆地中的海啸监测系统需要靠近地震区的密度网络。基于海啸旅行时间和波形的建模,以及估计延迟传输来设计车站的延迟和间距的方法。在西部地中海的情况下,我们证明,沿岸沿岸50公里的17个沿海潮流和13个海啸的网络被要求检测和测量几乎所有在非洲北部海岸产生的海啸。

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