全球海岸线风暴潮季节周期的变化

IF 3.4 2区 地球科学 Q1 OCEANOGRAPHY
A. Barroso, T. Wahl, A. Enriquez, J. Morim, S. Dangendorf
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引用次数: 0

摘要

风暴潮事件是大范围洪水的主要驱动因素,特别是当与平均海平面(MSL)叠加的天文潮汐相结合时。沿海风暴表现出季节性变化,这转化为风暴潮活动的季节性循环。了解季节性风暴潮周期的变化是至关重要的,因为振幅和相位的变化都可能改变洪水的潜力,特别是当与MSL周期的变化相结合时。本文利用准全球数据集的潮汐计观测资料,对风暴潮季节周期及其与MSL季节周期的联系进行了全面分析。谐波分析用于评估风暴潮季节周期随时间的平均和变化。采用极值分析方法探讨季节变化对风暴潮回归水平的影响。我们还量化了大尺度气候模式的影响,并比较了风暴潮和MSL的季节性如何相互变化。对于热带气旋地区以外的潮汐计来说,风暴潮周期的高峰通常出现在冬季,那里风暴潮周期的阶段也有较大的变化。21%的潮汐计分析显示,峰值的时间变化超过一个月。MSL和风暴潮周期在30天内至少达到一次高峰,超过了74%的潮汐计的历史记录。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Changes in the Seasonal Cycle of Storm Surge Along the Global Coastline

Changes in the Seasonal Cycle of Storm Surge Along the Global Coastline

Storm surge events are a key driver of widespread flooding, particularly when combined with astronomical tides superimposed on mean sea level (MSL). Coastal storms exhibit seasonal variability which translates into a seasonal cycle in storm surge activity. Understanding changes in the seasonal storm surge cycle is critical as both changes in the amplitude and the phase may alter the flood potential, especially when compounded with changes in the MSL cycle. Here, a comprehensive analysis of the storm surge seasonal cycle and its links to the MSL seasonal cycle is performed using tide gauge observations from a quasi-global data set. Harmonic analysis is used to assess the mean and changing storm surge seasonal cycles over time. Extreme value analysis is applied to explore the effect of seasonal changes on storm surge return levels. We also quantify the influence of large-scale climate modes, and we compare how the seasonality of storm surge and MSL have changed relative to each other. The peak of the storm surge cycle typically occurs during winter for tide gauges outside of tropical cyclone regions, where there is also greater variability in the phase of the storm surge cycle. The timing of the peak varied by more than a month at 21% of the tide gauges analyzed. The MSL and storm surge cycles peaked at least once within 30 days over the historic records at 74% of tide gauges.

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来源期刊
Journal of Geophysical Research-Oceans
Journal of Geophysical Research-Oceans Earth and Planetary Sciences-Oceanography
CiteScore
7.00
自引率
13.90%
发文量
429
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