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Case-Study Modelling Analysis of Hydrodynamics in the Nearshore of the Baltic Sea Forced by Extreme Along-shore Wind in the Case of a Cross-shore Obstacle

机译:跨岸障碍物在极端近岸风的作用下波罗的海近岸水动力的案例研究建模分析

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In the current study we use a three-dimensional model with hydrodynamic and spectral wave modules operating in a coupled mode to simulate the response of currents and wind wave fields to winds of 20–25 m/sec offshore of the protective structure of the Saint Petersburg Flood Prevention Facility Complex. The model was calibrated against field data, which allowed us to obtain a tool describing storm situations in the eastern part of the Gulf of Finland with a satisfactory accuracy. The numerical modeling showed that the protective dam did not have a noticeable effect on the levels of stormsurge, significantwave height, or current speed in areas seaward of the dam. The increase in erosion processes on the southern shore of the easternmost part of the Gulf of Finland in recent past has most probably been related to other factors. We found that if a west or south-west wind of at least 25 m/s blows over the Baltic Sea for at least 16 hours, the level of storm surges seaward of the dam may reach 3 or more meters. An artificial strengthening of the coastline and the creation of shore protection structures are recommended.
机译:在当前的研究中,我们使用带有耦合模式的水动力和频谱波模块的三维模型来模拟电流和风波场对圣彼得堡保护结构海上20-25 m / sec风的响应防洪设施综合体。该模型已针对现场数据进行了校准,这使我们能够以令人满意的精度获得描述芬兰湾东部风暴情况的工具。数值模型表明,防护坝对风暴潮的水平,显着的波高或在坝沿海地区的当前速度没有明显影响。最近,芬兰湾最东端南岸的侵蚀过程增加,很可能与其他因素有关。我们发现,如果波罗的海的西风或西南风至少以25 m / s的速度吹动至少16小时,则大坝向海的风暴潮水平可能会达到3米或以上。建议人为地加强海岸线并建立海岸保护结构。

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