Shallow Coastal Water Responses During the Near Landfall Intensification of Tropical Cyclones in the South China Sea

IF 1.7 4区 地球科学 Q4 METEOROLOGY & ATMOSPHERIC SCIENCES
Sola Pub Date : 2024-02-02 DOI:10.2151/sola.2024-008
Chunyi Xiang, Hironori Fudeyasu, Udai Shimada, Ryuji Yoshida
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引用次数: 0

Abstract

Shallow coastal seawater response during the passage of near-landfall intensification (NLI) tropical cyclones (TCs) and non-NLI TCs was examined using oceanic and atmospheric reanalysis data and observations. The sea surface temperature ahead of the NLI-TC track is maintained or even increases when NLI-TC is approaching the land. The magnitude of the wind stress, which play an important role in the NLI process, is related to the zonal surface wind on the right side of the tracks. Coastal mixed layer warming can be explained by Ekman transport under sustained wind stress due to surface wind forcing. The successive deepening of the coastal ocean boundary layer and the increase in warming in the subsurface seawater temperature by an average of 0.3°C, could maintain thermal capacity in a certain degree. This shallow coastal water response could partly explain the NLI progress in the northern South China Sea, indicating the importance of coastal ocean dynamics and air-sea interactions.

中国南海热带气旋近登陆强化过程中的浅层沿海水响应
利用海洋和大气再分析数据和观测资料,研究了近陆加强热带气旋和非近陆加 强热带气旋过境时沿岸浅层海水的响应。当 NLI-TC 接近陆地时,NLI-TC 轨道前方的海面温度保持不变,甚至有所上升。在NLI过程中起重要作用的风应力的大小与路径右侧的地带性表面风有关。沿岸混合层的增温可以用海面风力强迫下持续风应力作用下的 Ekman 输运来解释。沿岸海域边界层的连续加深和表层下海水温度平均上升 0.3℃,可以在一定程度上保持热容量。这种沿岸浅水响应可以部分解释南海北部 NLI 的进展,表明了沿岸海洋动力学和海气相互作用的重要性。
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来源期刊
Sola
Sola 地学-气象与大气科学
CiteScore
3.50
自引率
21.10%
发文量
41
审稿时长
>12 weeks
期刊介绍: SOLA (Scientific Online Letters on the Atmosphere) is a peer-reviewed, Open Access, online-only journal. It publishes scientific discoveries and advances in understanding in meteorology, climatology, the atmospheric sciences and related interdisciplinary areas. SOLA focuses on presenting new and scientifically rigorous observations, experiments, data analyses, numerical modeling, data assimilation, and technical developments as quickly as possible. It achieves this via rapid peer review and publication of research letters, published as Regular Articles. Published and supported by the Meteorological Society of Japan, the journal follows strong research and publication ethics principles. Most manuscripts receive a first decision within one month and a decision upon resubmission within a further month. Accepted articles are then quickly published on the journal’s website, where they are easily accessible to our broad audience.
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