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Physical modulation to the biological productivity in the summer Vietnam upwelling system

Wenfang Lu; Lie-Yauw Oey; Enhui Liao; Wei Zhuang; Xiao-Hai Yan; Yuwu Jiang
Ocean Science · Vol. 14, Issue 5 · pp. 1303-1320 · 2018

Abstract

Biological productivity in the summer Vietnam boundary upwelling system in the western South China Sea, as in many coastal upwelling systems, is strongly modulated by wind. However, the role of ocean circulation and mesoscale eddies has not been elucidated. Here, we show a close spatiotemporal covariability between primary production and kinetic energy. High productivity is associated with high kinetic energy, which accounts for ∼15 % of the production variability. Results from a physical–biological coupled model reveal that the elevated kinetic energy is linked to the strength of the current separation from the coast. In the low production scenario, the circulation is not only weaker but also shows weak separation. In the higher production case, the separated current forms an eastward jet into the interior South China Sea, and the associated southern recirculation traps nutrients and favors productivity. When separation is absent, the model shows weakened circulation and eddy activity, with ∼21 % less nitrate inventory and ∼16 % weaker primary productivity.

Bibliographic Information

JournalOcean Science
PublisherCopernicus Publications / European Geosciences Union
Publication Date2018-10-24
Publication Year2018
Volume14
Issue5
Pages1303-1320
Document TypeJournal Article
Print ISSN1812-0784
eISSN1812-0792
DOI10.5194/os-14-1303-2018
SubjectOceanography; physical oceanography; chemical oceanography; biogeochemistry; ocean modelling

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NARA Access CoverageOA / free full text
Journal Homepagehttps://www.ocean-science.net/
Publisher PageOpen Publisher Page
This article is openly available from the publisher.