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热带气旋“海伦”对莫桑比克海峡北部叶绿素向北西运动的影响。

Effects of Tropical Cyclone (TC) Hellen on the north-westward movement of chlorophyll in the northern Mozambique Channel.

机构信息

Jiangsu Key Laboratory of Marine Bioresources and Environment /Jiangsu Key Laboratory of Marine Biotechnology, Jiangsu Ocean University, Lianyungang, Jiangsu province, China.

School of Marine Technology and Geomatics, Jiangsu Ocean University, Lianyungang, Jiangsu province, China.

出版信息

PLoS One. 2023 Nov 2;18(11):e0292728. doi: 10.1371/journal.pone.0292728. eCollection 2023.

Abstract

An intense tropical cyclone (TC), TC Hellen, occurred in the northern Mozambique Channel on March 27, 2014, and moved from the east coast of the African continent to the northern Madagascar island. TC Hellen dramatically altered the marine environment in the northern Mozambique Channel, resulting in a significant chlorophyll-a (Chl-a) bloom. A giant surface Chl-a northwest-ward movement from the northwest coast of Madagascar Island was first observed after the passage of TC Hellen in the northern Mozambique Channel. The dynamic mechanisms of these phenomenon were studied by satellite remote sensing, multisource reanalysis data, and Argo float data. The results show that transient northwestward-moving eddies, upwelling, and winds had important effects on the Chl-a bloom and its northwestward movement. Ekman transport driven by coastal southeasterly winds entrained waters with high Chl-a concentrations to the northwest, while TC Hellen enhanced cyclonic eddy upwelling and uplifted nutrient-rich deep water to the upper ocean. This vertical mixing and upwelling in turn triggered the Chl-a bloom in the offshore surface layer. This study provides insight into the reflection of phytoplankton dynamics by TCs in the northern Mozambique Channel.

摘要

一场强烈的热带气旋(TC)海伦于 2014 年 3 月 27 日在莫桑比克海峡北部形成,并从非洲大陆东海岸移动到马达加斯加岛北部。TC 海伦剧烈改变了莫桑比克海峡北部的海洋环境,导致了显著的叶绿素-a(Chl-a)爆发。在 TC 海伦经过莫桑比克海峡北部后,首次观测到来自马达加斯加岛西北海岸的巨型表层 Chl-a 向西北方向移动。通过卫星遥感、多源再分析数据和 Argo 浮标数据研究了这些现象的动力机制。结果表明,瞬态向西北移动的漩涡、上升流和风对 Chl-a 爆发及其向西北移动有重要影响。沿岸东南风驱动的 Ekman 输运将高 Chl-a 浓度的水带入西北,而 TC 海伦增强了气旋性漩涡上升流,并将富含营养的深层水抬升到上层海洋。这种垂直混合和上升流反过来引发了近海表层的 Chl-a 爆发。本研究深入了解了莫桑比克海峡北部 TC 对浮游植物动力学的影响。

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