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Tsunami Resonance in Palma Bay and Harbor, Majorca Island, as induced by the 2003 Western Mediterranean Earthquake

机译:2003年西地中海地震在马略卡岛帕尔马湾和港口发生的海啸共鸣

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摘要

ABSTRACT: he tsunami induced by the May 21, 2003, Algerian Boumerde`s-Zemmouri earthquake (moment magnitude Mw=6.9) propagated across the western Mediterranean Basin, thereby causing material damages in some harbors and coastal areas. This was the case in the Balearic Islands and particularly the Palma harbor. Attempts to simulate the 2003 tsunami event found discrepancies between tsunami arrival times and wave amplitude when comparing tide gauge records with results from numerical models. To date, all published model results of the amplitude of the tsunami are underestimations, attributed to numerical limitations due to the lack of high-resolution bathymetry and poor definition of harbor geometry. Other views suggest the nappropriateness of the available seismic source parameterizations and the possible occurrence of submarine landsliding triggered by the earthquake that has not been included in the numerical simulations. In this article we present the results of a numerical study aimed at better understanding the response of the interacting Palma bay and harbor under the impact of the 2003 western Mediterranean tsunami. The transference of the tsunami energy from the generation area to the continental shelf, the bay, and the harbor has been studied and compared with the natural oscillation modes of the bay and harbor water bodies. Our work includes a sensitivity analysis of the source parameterization and the bathymetry grid size for the bay and harbor as a way to explain the discrepancies between simulations and observations. The Palma harbor tide gauge shows that energy from the tsunami concentrated mainly in periods that fitted to the natural modes of oscillations of the bay. Therefore, the significant wave amplification observed inside the harbor, mainly in its northern basin, was generated by a resonance effect induced by Palma bay. The improvement of the bathymetry grid resolution in the bay and harbor domains and the inclusion in the simulations of the exact harbor geometry and internal configuration result in a slight wave-high increment that is much below the wave height recorded in the tide gauge. Our results strongly point to a necessary revision of the tsunami seismic source parameters.
机译:摘要:2003年5月21日,阿尔及利亚Boumerde的Zemmouri地震(矩震级Mw = 6.9)引发的海啸席卷了整个地中海西部盆地,从而在一些港口和沿海地区造成了物质损失。在巴利阿里群岛,尤其是帕尔马港,就是这种情况。尝试模拟2003年海啸事件时,将潮汐仪记录与数值模型结果进行了比较,发现海啸到达时间和波幅之间存在差异。迄今为止,由于缺乏高分辨率测深法和对海港几何形状的定义不佳,所有已公布的海啸振幅模型结果均被低估,这归因于数值限制。其他观点则表明可用地震源参数化的不当性以及由于地震触发的海底滑坡可能发生,而数值模拟并未包括在内。在本文中,我们提供了一项数值研究的结果,旨在更好地理解2003年西地中海海啸对相互作用的帕尔马湾和海港的反应。研究了海啸能量从发电区到大陆架,海湾和港口的转移,并与海湾和港口水体的自然振荡模式进行了比较。我们的工作包括对源参数化和海湾和港口的测深网格大小进行敏感性分析,以解释模拟和观测之间的差异。帕尔马海港潮汐仪显示,海啸产生的能量主要集中在与海湾自然振荡相适应的时期。因此,在港口内部(主要在北部盆地)观察到的显着波放大是由帕尔马湾引起的共振效应产生的。海湾和港口区域的测深网格分辨率的提高以及精确的港口几何形状和内部构造的模拟中的包含在内,导致波浪形的波浪高增量,该增量大大低于潮汐仪中记录的波浪高度。我们的结果强烈指出必须对海啸地震震源参数进行修改。

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