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Local and large-scale controls of the exceptional Venice floods of November 2019

机译:2019年11月出色的威尼斯洪水的地方和大规模控制

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摘要

On 12 November 2019, an exceptional flood event took place in Venice, second only to the one that occurred on 4 November 1966. Moreover, with four extremely high tides since 11 November 2019, this was the worst week for flooding in Venice since the beginning of sea level records (1872). The event that struck Venice and the northern Adriatic Sea on 12 November 2019, although having certain conditions seemingly typical of the events causing exceptional high waters, had some peculiar characteristics not observed before, which deserved an in-depth analysis. Several factors made this event exceptional: the in-phase timing between the peak of the storm surge and the astronomical tide; a deep low-pressure cyclone over the central-southern Tyrrhenian Sea that generated strong Sirocco (south-easterly) winds along the main axis of the Adriatic Sea, pushing waters to the north; a fast-moving local depression - and the associated wind perturbation - travelling in the north-westward direction over the Adriatic Sea along the Italian coast, generating a meteotsunami; very strong winds (28 m s~(-1)on average with 31 m s~(-1) gusts) over the Lagoon of Venice, which led to a rise in water levels and damages to the historic city; and an anomalously high monthly mean sea level in the Adriatic Sea, induced by a standing low-pressure and wind systems over the Mediterranean Sea, that was associated with large-scale low-frequency atmospheric dynamics. In this study, the large set of available observations and high-resolution numerical simulations have been used to quantify the contribution of the mentioned drivers to the peak of the flood event and to investigate the peculiar weather and sea conditions over the Mediterranean Sea during the Venice floods of November 2019.
机译:2019年11月12日,威尼斯举行了一个特殊的洪水事件,仅次于1966年11月4日发生的威尼斯。此外,自2019年11月11日以来的四个极高的潮汐,这是自开始以来威尼斯洪水最糟糕的一周海平面记录(1872年)。威尼斯及2019年11月12日袭击威尼斯和北方亚得里亚海的活动虽然具有一定的条件似乎典型的典型事件导致出色的高水域,但之前没有观察到一些特殊的特征,这应该得到深入的分析。几个因素使这一事件特殊:风暴浪涌峰值与天文潮的峰值之间的相位时间;南部南部的中央南部南部的深压旋风,沿着亚得里亚海的主轴产生强大的西罗科(南东)风,向北推水域;一种快速移动的局部凹陷 - 以及沿着意大利海岸的亚得里亚海向北方向旅行的相关风扰动,产生了一个Meteotsunami;在威尼斯的泻湖泻湖平均超过31米S〜(-1)阵风(28米S〜(-1),这导致水位升高并损害历史悠久的城市;在亚得里亚海中,在地中海的站立低压和风系统诱导的亚得里亚海中的一个异常高的海平面,与大规模的低频大气动力学相关。在这项研究中,大量的可用观察和高分辨率数值模拟已被用于量化提到的驱动程序对洪水事件的峰值的贡献,并在威尼斯期间调查地中海的特殊天气和海洋状况2019年11月洪水。

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  • 来源
    《Oceanographic Literature Review》 |2021年第9期|1916-1916|共1页
  • 作者单位

    CNR - National Research Council of Italy ISMAR - Marine Sciences Institute Venice Italy;

    CNR - National Research Council of Italy ISMAR - Marine Sciences Institute Venice Italy;

    CNR - National Research Council of Italy ISMAR - Marine Sciences Institute Venice Italy;

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