英吉利海峡涌浪的发展:对海岸监测的启示

IF 1.6 Q4 ENVIRONMENTAL SCIENCES Anthropocene Coasts Pub Date : 2023-03-20 DOI:10.1139/anc-2021-0008
Thomas Dhoop, Charlie Thompson
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引用次数: 1

摘要

强烈的涌浪,特别是当它们与高水位重合时,可能会对海岸造成重大危害。为了更好地了解和预测这些风险,分析产生这些事件的海平面和波浪以及由此产生的沿海影响至关重要。英吉利海峡接连发生了两次高能涌浪事件,这两次都没有被模拟的洪水预报预测到。第一次事件发生在2021年1月30日,在英格兰西南海岸产生了中等或略低于0.25年一遇的显著浪高,但与显著的涌浪相结合,导致西湾东海滩和Chesil海滩漫顶。第二次事件发生在2021年2月1日,在英格兰南部海岸线的许多地方产生了最高的波浪能周期,在高水位时,波浪在普尔湾和克赖斯特彻奇湾的海滨长廊上掀起,并在海灵岛造成漫顶。详细描述了这两个事件,并通过使用copula函数的联合重现期分析绘制了它们的空间足迹。研究发现,水位和显著波高的典型联合重现期分析低估了潜在影响,而水位和波浪功率(P)的联合考虑更能描述1月31日的事件,水位和能量周期(Te)的联合审议最能描述2月1日的事件。因此,建议采用Te和P进行海岸监测,并在未来的研究中进一步探索使用这两个参数进行涌浪监测。
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Swell wave progression in the English Channel: implications for coastal monitoring

Energetic swell waves, particularly when they coincide with high water levels, can present significant coastal hazards. To better understand and predict these risks, analysis of the sea levels and waves that generate these events and the resulting coastal impacts is essential. Two energetic swell events, neither of which were predicted by modelled flood forecasts, occurred in quick succession in the English Channel. The first event, on 30 January 2021, produced moderate significant wave heights at or just below the 0.25 year return period along the southwest English coast, but combined with significant swell caused overtopping at East Beach in West Bay and at Chesil Beach. The second event, on 1 February 2021, generated the highest wave energy periods measured at many locations along the southern English coastline and, at high water, caused waves to run up over the promenades at Poole Bay and Christchurch Bay and caused overtopping at Hayling Island. Both events are described in detail, and their spatial footprints are mapped through a joint return period analysis using a copula function. It is found that typical joint return period analysis of water level and significant wave height underestimates potential impacts, while a joint consideration of water level and wave power (P) describes the 31 January event better and a joint consideration of water level and energy period (Te) best describes the 1 February event. Therefore, it is recommended that Te and P are adopted for coastal monitoring purposes, and that future studies further explore the use of both parameters for swell monitoring.

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