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Earthquake-generated tsunamis in the Mediterranean Sea: scenarios of potential threats to Southern Italy

机译:地中海地震引发的海啸:意大利南部潜在威胁的情景

摘要

We calculated the impact on Southern Italy of a large set of tsunamis resulting from earthquakes generated by major fault zones of the Mediterranean Sea. Our approach merges updated knowledge on the regional tectonic setting and scenario-like calculations of expected tsunami impact.We selected three potential source zones located at short, intermediate and large distance from our target coastlines: the Southern Tyrrhenian thrust be the Tell-Atlas thrust be and the western Hellenic Arc. For each zone we determined a Maximum Credible Earthquake and described the geometry, kinematics and size of its associated Typical Fault. We then let the Typical Fault float along strike of its parent source zone and simulated all tsunamis it could trigger. Simulations are based on the solution of the nonlinear shallow water equations through a finite-difference technique. For each run we calculated the wave fields at desired simulation times and the maximum water elevation field, then produced travel-time maps and maximum wave-height profiles along the target coastlines. The results show a highly variable impact for tsunamis generated by the different source zones. For example, a large Hellenic Arc earthquake will produce a much higher tsunami wave (up to 5 m) than those of the other two source zones (up to 1.5 m). This implies that tsunami scenarios for Mediterranean Sea countries must necessarily be computed at the scale of the entire basin. Our work represents a pilot study for constructing a basin-wide tsunami scenario database to be used for tsunami hazard assessment and early warning.
机译:我们计算了由地中海主要断裂带产生的地震对海啸造成的大量冲击,对意大利南部的影响。我们的方法融合了有关区域构造环境的最新知识和对海啸影响的情景模拟计算。 Tell-Atlas推力带;和古希腊弧线。对于每个区域,我们确定了最大可信地震,并描述了与之相关的典型断层的几何形状,运动学和大小。然后,我们让典型断层沿着其父源区的走向浮动,并模拟它可能触发的所有海啸。模拟是通过有限差分技术基于非线性浅水方程的求解。对于每次运行,我们都计算了所需模拟时间的波场和最大水位场,然后生成了沿目标海岸线的行进时间图和最大波高剖面。结果表明,不同源区产生的海啸影响很大。例如,大的希腊弧地震将产生比其他两个震源区(最高1.5 m)更高的海啸波(最高5 m)。这意味着必须在整个海盆范围内计算地中海国家的海啸情景。我们的工作代表了一项初步研究,旨在建立一个全流域海啸情景数据库,用于海啸危害评估和预警。

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