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Near-field tsunami early warning and emergency planning in the Mediterranean Sea

机译:地中海近海海啸预警和应急预案

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The new European project Near-field Tsunami Early Warning and Emergency Planning in the Mediterranean Sea (NEARTOWARN) faces the need to develop operational tsunami early warning systems in near-field (local) conditions where the travel time of the first tsunami wave is very short, that is less than 30 min, which is a typical case in the North East Atlantic and the Mediterranean Sea region but also elsewhere around the globe. The operational condition that should be fulfilled is that the time of tsunami detection, plus the time of warning transmitting, plus the time of evacuation should not exceed the travel time of the first tsunami wave from its source to the closest evacuation zone. To this goal the time to detect of the causative earthquake should be compressed at the very minimum. In this context the core of the proposed system is a network of seismic early warning devices, which activate and send alert in a few seconds after the generation of a near-field earthquake, when a seismic ground motion exceeding a prescribed threshold is detected. Then civil protection mobilizes to manage the earthquake crisis but also to detect and manage a possible tsunami through a geographical risk management system. For the tsunami detection the system is supported by tide-gauges of radar type, a database of presimulated tsunami scenarios, and a local tsunami decision matrix. The island of Rhodes in the eastern termination of the Hellenic Arc and Trench has been selected for a pilot and operational development of the local tsunami warning system given that the island is a highly popular tourist destination, historically it was hit by large tsunamigenic earthquakes and was recently the master test-site for the pan-European FP6 tsunami research project Tsunami Risk ANd Strategies For the European Region (TRANSFER).
机译:欧洲新的地中海近海海啸预警和紧急计划项目(NEARTOWARN)面临着在第一次海啸波的传播时间很短的近场(本地)条件下开发业务海啸预警系统的需求。不到30分钟,这是东北大西洋和地中海地区以及全球其他地区的典型案例。应满足的运行条件是,海啸发现的时间,警告传播的时间以及撤离的时间不应超过第一波海啸从其发源点到最近撤离区域的传播时间。为了达到这个目标,应将致病性地震的发现时间尽可能缩短。在这种情况下,所提出系统的核心是地震预警设备网络,当检测到地震地面运动超过规定的阈值时,该网络会在近场地震发生后的几秒钟内激活并发送警报。然后动员民防人员管理地震危机,并通过地理风险管理系统发现和管理可能的海啸。对于海啸检测,该系统由雷达类型的潮汐仪,预先模拟的海啸情景数据库和本地海啸决策矩阵支持。考虑到该岛是极受游客欢迎的旅游目的地,历史上它曾遭受海啸大地震的袭击,因此被选为希腊海弧和海沟东端的罗得斯岛,作为当地海啸预警系统的试点和业务发展。最近,泛欧洲FP6海啸研究项目“欧洲地区海啸风险与战略”(TRANSFER)的主要测试地点。

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