气候变化驱动的中亚得里亚海沿海洪水与海防结构的适应

IF 2.6 3区 地球科学 Q1 MARINE & FRESHWATER BIOLOGY
Agnese Baldoni , Francesco Marini , Giorgio Filomena , Stefano Parlani , Maurizio Brocchini
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引用次数: 0

摘要

由于气候变化的后果,亚得里亚海受到海平面上升和日益频繁的极端事件的严重影响。这项工作旨在评估未来极端海洋风暴在马尔凯地区沿海(意大利)五个试验点造成的沿海洪水。在IPCC确定的非常高排放情景下,对2070年的水位和波浪的预估被用来建立一个模型链,该模型链提供了洪水地区的淹没范围和水深。为了确定波高和周期的联合概率,考虑到它们的相互依赖性,进行了双变量极值分析。与单变量方法相比,通过一种可以更好地理解波浪能量和风暴动力学之间相关性的耦合方法,计算了波高峰周期的极端对。无论分析地点如何,沿海洪水影响了所有的海滩和夏季设施,并向内陆延伸了数百米,城市地区和战略基础设施也很有趣。洪水的持续时间随着回复期的增加而增加,显示出中概率到低概率极端事件的后果,预计到本世纪末每年发生一次。面对这种情况,需要调整海防结构,仔细选择最佳的适应方案。对于出线防波堤,增加其高度总是会导致洪水减少,而对于淹没屏障,当干舷接近零时,则会产生负面影响:即使波浪传递减少,保护区内也会产生大量堆积,从而扩大了淹没范围,数值结果表明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Climate change-driven coastal flooding in the Mid Adriatic Sea and adaptation of coastal defense structures
The Adriatic Sea is highly impacted by rising sea levels and increasingly frequent extreme events due to climate change consequences. This work aims at evaluating coastal flooding caused by future extreme sea storms for five test sites along the Marche Region coast (Italy). Projections of water levels and waves to 2070, under the very high emission scenario identified by the IPCC, were used to force a modeling chain that provided the inundation extent and the water depths in the flooded areas. To define the joint probability of wave height and period, accounting for their mutual dependence, a bivariate extreme value analysis was performed. An extreme pair of wave height-peak period was computed through a copula approach that better allows to understand the correlation between wave energy and storm dynamics compared to univariate methods. Regardless of the analyzed site, coastal flooding affects all the beaches and summer facilities and extends hundred of meters inland, interesting also urban areas and strategic infrastructures. The extension of the flooding increases with increasing return periods, showing the consequences of medium-to-low probability extreme events, projected to occur once in a year by the end of the century. To face such situation, coastal defense structures need to be adapted, carefully selecting the best adaptation option to undertake. While for emerged breakwaters increasing their height always results in a reduced flooding, for submerged barriers a negative effect occurs when the freeboard approaches zero: even if the wave transmission is reduced, a large piling-up generates in the protected area, enlarging the inundation extent, as shown by numerical results.
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来源期刊
CiteScore
5.60
自引率
7.10%
发文量
374
审稿时长
9 months
期刊介绍: Estuarine, Coastal and Shelf Science is an international multidisciplinary journal devoted to the analysis of saline water phenomena ranging from the outer edge of the continental shelf to the upper limits of the tidal zone. The journal provides a unique forum, unifying the multidisciplinary approaches to the study of the oceanography of estuaries, coastal zones, and continental shelf seas. It features original research papers, review papers and short communications treating such disciplines as zoology, botany, geology, sedimentology, physical oceanography.
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