热带气旋
热带波浪
气候学
畸形波
大西洋飓风
强迫(数学)
风暴
台风
热带
热带气旋尺度
环境科学
海洋学
地质学
Cyclone(编程语言)
物理
量子力学
非线性系统
现场可编程门阵列
渔业
计算机科学
计算机硬件
生物
作者
Swen Jullien,Jérôme Aucan,Élodie Kestenare,Matthieu Lengaigne,Christophe Menkès
标识
DOI:10.1038/s41467-024-50929-2
摘要
Abstract Tropical and extra-tropical storms generate extreme waves, impacting both nearby and remote regions through swell propagation. Despite their devastating effects in tropical areas, the contribution of tropical cyclones (TCs) to global wave-induced coastal risk remains unknown. Here, we enable a quantitative assessment of TC’s role in extreme waves approaching global coastlines, by designing twin oceanic wave simulations with and without realistic TC wind forcing. We find that TCs substantially contribute to extreme breaking heights in tropical regions (35-50% on average), reaching 100% in high-density TC areas like the North Pacific. TCs also impact remote TC-free regions, such as the equatorial Pacific experiencing in average 30% of its extreme wave events due to TCs. Interannual variability amplifies TC-induced wave hazards, notably during El Niño in the Central Pacific, and La Niña in the South China Sea, Caribbean Arc, and South Indian Ocean coastlines. This research offers critical insights for global risk management and preparedness.
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