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Identification of 'energetic' swell waves in a tidal strait

机译:识别潮汐海峡中的“高能”激波

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摘要

Energetic swell waves present a significant coastal hazard. Overtopping is particularly sensitive to these longer period waves, potentially resulting in coastal flooding. In narrow tidal seas which are linked to large oceans, such as the English Channel, the importance of swell for design considerations is not immediately obvious. However, historical experience shows occasional severe impacts from long period waves, such as on 6th February 1904,13th February 1979 and most recently two events in February 2014. When wave buoy measurements are analyzed using spectral partitioning methods, it is possible to identify swell wave systems with significant energy within the overall spectrum. This often coincides with the occurrence of storm waves, which might mask the presence of the swell component without such analysis. Two case studies where flooding occurred during storm events are examined in this paper. It has been possible to associate individual spectral components with the occurrence of overtopping of coastal defences at a particular location. Further investigation of the characteristics and frequency of energetic swell waves are recommended to enhance prediction and the design of coastal defences, and hence reduce their consequences.
机译:高能的涌浪对海岸构成重大危害。越顶对这些较长时间的波浪特别敏感,可能导致沿海洪灾。在与大洋相通的狭窄潮汐海域(例如英吉利海峡)中,对于设计考虑因素而言,膨胀的重要性并不是立即显而易见的。但是,历史经验表明,长期波浪有时会产生严重影响,例如1904年2月6日,1979年2月13日以及最近的2014年2月两个事件。当使用频谱划分方法对海浪浮标测量进行分析时,可以识别浪涌在整个频谱内具有显着能量的系统。这通常与风暴波的发生相吻合,如果不进行此类分析,可能会掩盖涌浪分量的存在。本文研究了两个在风暴事件中发生洪水的案例研究。可能将单个频谱成分与特定位置的海岸防卫设施的超标发生联系起来。建议进一步研究高能膨胀波的特征和频率,以增强对海岸防御的预测和设计,从而减少其后果。

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