Physical processes and biological productivity in the upwelling regions of the tropical Atlantic

IF 4.1 3区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES Ocean Science Pub Date : 2023-05-11 DOI:10.5194/os-19-581-2023
P Brandt, G. Alory, F. M. Awo, M. Dengler, S. Djakouré, Rodrigue Anicet Imbol Koungue, J. Jouanno, Mareike Körner, Marisa Roch, M. Rouault
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引用次数: 1

Abstract

Abstract. In this paper, we review observational and modelling results on the upwelling in the tropical Atlantic between 10∘ N and 20∘ S. We focus on the physical processes that drive the seasonal variability of surface cooling and the upward nutrient flux required to explain the seasonality of biological productivity. We separately consider the equatorial upwelling system, the coastal upwelling system of the Gulf of Guinea and the tropical Angolan upwelling system. All three tropical Atlantic upwelling systems have in common a strong seasonal cycle, with peak biological productivity during boreal summer. However, the physical processes driving the upwelling vary between the three systems. For the equatorial regime, we discuss the wind forcing of upwelling velocity and turbulent mixing, as well as the underlying dynamics responsible for thermocline movements and current structure. The coastal upwelling system in the Gulf of Guinea is located along its northern boundary and is driven by both local and remote forcing. Particular emphasis is placed on the Guinea Current, its separation from the coast and the shape of the coastline. For the tropical Angolan upwelling, we show that this system is not driven by local winds but instead results from the combined effect of coastally trapped waves, surface heat and freshwater fluxes, and turbulent mixing. Finally, we review recent changes in the upwelling systems associated with climate variability and global warming and address possible responses of upwelling systems in future scenarios.
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热带大西洋上升流区的物理过程和生物生产力
摘要在本文中,我们回顾了在10°N到20°S之间热带大西洋上升流的观测和模拟结果。我们关注的是驱动地表冷却季节性变化的物理过程,以及解释生物生产力季节性所需的向上的养分通量。我们分别考虑赤道上升流系统、几内亚湾沿岸上升流系统和热带安哥拉上升流系统。所有三个热带大西洋上升流系统都有一个共同的强烈的季节周期,生物生产力在北方夏季达到峰值。然而,驱动上升流的物理过程在三个系统之间是不同的。对于赤道区,我们讨论了上升流速度和湍流混合的风强迫,以及负责温跃层运动和洋流结构的潜在动力学。几内亚湾的沿海上升流系统位于其北部边界,受本地和远程作用力的驱动。特别强调几内亚流,它与海岸的分离和海岸线的形状。对于热带安哥拉的上升流,我们表明该系统不是由当地风驱动的,而是由沿海捕获波、表面热量和淡水通量以及湍流混合的综合影响造成的。最后,我们回顾了与气候变率和全球变暖相关的上升流系统的近期变化,并讨论了上升流系统在未来情景中的可能响应。
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来源期刊
Ocean Science
Ocean Science 地学-海洋学
CiteScore
5.90
自引率
6.20%
发文量
78
审稿时长
6-12 weeks
期刊介绍: Ocean Science (OS) is a not-for-profit international open-access scientific journal dedicated to the publication and discussion of research articles, short communications, and review papers on all aspects of ocean science: experimental, theoretical, and laboratory. The primary objective is to publish a very high-quality scientific journal with free Internet-based access for researchers and other interested people throughout the world. Electronic submission of articles is used to keep publication costs to a minimum. The costs will be covered by a moderate per-page charge paid by the authors. The peer-review process also makes use of the Internet. It includes an 8-week online discussion period with the original submitted manuscript and all comments. If accepted, the final revised paper will be published online. Ocean Science covers the following fields: ocean physics (i.e. ocean structure, circulation, tides, and internal waves); ocean chemistry; biological oceanography; air–sea interactions; ocean models – physical, chemical, biological, and biochemical; coastal and shelf edge processes; paleooceanography.
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