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首页> 外文期刊>Journal of marine science and technology >Modelling of wave-current interactions at the mouths of the Danube
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Modelling of wave-current interactions at the mouths of the Danube

机译:多瑙河口处的波流相互作用建模

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The target of the present study is the entrance to the Danube Delta in the Black Sea. The wave conditions in this coastal sector are usually significant from an energetic point of view and the relatively strong currents induced there by the outflow from the Danube lead to interactions between waves and currents. This process modifies considerably both the magnitude and direction waves, affecting also coastal navigation and sediment transport patterns. In order to assess the effects of the wave-current interactions, the simulating waves nearshore (SWAN) model was considered for developing a multilevel wave prediction system. Validations against measured data were carried out for each computational level. Five case studies corresponding to the most relevant patterns of the environmental matrix were analyzed. Finally, in order to assess the current effect for a longer timescale, an analysis concerning the variation of the main wave parameters was performed for a 3-month period considering some reference points. The results show that the currents produce considerable changes in the wave field, especially as regards the significant wave heights, mean wave directions and wavelengths. The Benjamin-Feir index was also estimated. The analysis of the variation induced by the current over this spectral shape parameter indicates that, in certain conditions, in the target area the wave heights cannot be considered Rayleigh distributed and freak waves may also occur.
机译:本研究的目标是黑海多瑙河三角洲的入口。从高能的角度来看,该沿海地区的波浪条件通常很重要,多瑙河的流出所引起的相对较强的水流导致了波浪与水流之间的相互作用。这个过程大大改变了幅度波和方向波,也影响了沿海航行和沉积物的运输方式。为了评估波流相互作用的影响,考虑使用近海模拟波(SWAN)模型来开发多级波预测系统。针对每个计算级别针对测量数据进行验证。分析了与最相关的环境矩阵模式相对应的五个案例研究。最后,为了评估较长时间范围内的当前影响,在考虑了一些参考点的情况下进行了为期3个月的有关主波参数变化的分析。结果表明,电流在波场中产生了很大的变化,特别是在显着的波高,平均波向和波长方面。还估计了本杰明-费尔指数。由电流在此频谱形状参数上引起的变化的分析表明,在某些条件下,在目标区域中,不能将波高视为瑞利分布,也可能会出现怪异波。

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