Is the boreal spring tropical Atlantic variability a precursor of the Equatorial Mode?

被引:1
作者
Marta Martín-Rey
Alban Lazar
机构
[1] Université Pierre et Marie Curie (UPMC),Laboratoire d’Oceanographie et du Climat: Expérimentation et Approches Numériques (LOCEAN)
[2] Universités Sorbonnes,Departamento de Oceanografía Física y Tecnológica
[3] UMR5318 CECI CNRS-CERFACS,undefined
[4] Instituto de Ciencias del Mar (ICM-CSIC),undefined
来源
Climate Dynamics | 2019年 / 53卷
关键词
Tropical Atlantic; Meridional Mode; Equatorial Mode; Ocean waves; SST variability;
D O I
暂无
中图分类号
学科分类号
摘要
The Equatorial Mode (EM) governs the tropical Atlantic inter-annual variability during boreal summer. It has profound impacts on the climate of adjacent and remote areas. However, predicting the EM is one of the most challenging and intriguing issues for the scientific community. Recent studies have suggested a possible connection between the boreal spring Meridional Mode (MM) and the EM through ocean wave propagation. Here, we use a set of sensitivity experiments with a medium-resolution ocean model to determine the precursor role of a MM to create equatorial SST variability. Our results demonstrate that boreal summer equatorial SSTs following a MM, are subject to two counteracting effects: the local wind forcing and remotely-excited oceanic waves. For a positive MM, the anomalous easterly winds blowing along the equator, shallow the thermocline, cooling the sea surface via vertical diffusion and meridional advection. Anomalous wind curl excites a downwelling Rossby wave north of equator, which is reflected at the western boundary becoming an equatorial Kelvin wave (KW). This downwelling KW propagates eastward, deepening the thermocline and activating the thermocline feedbacks responsible for the equatorial warming. Moreover, the local wind forcing and RW-reflected mechanism have a significant and comparable impact on the equatorial SST variability. Changes in the intensity and persistence of these distinct forcings will determine the equatorial SST response during boreal summer. Our results give a step forward to the improvement of the EM predictability.
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页码:2339 / 2353
页数:14
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