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Phytoplankton dynamics driven by vertical nutrient fluxes during the spring inter-monsoon period in the northeastern South China Sea

机译:南海东北部春季季风间季间垂直养分通量驱动的浮游植物动力学

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A field survey from the coastal ocean zones to the offshore pelagic zones of the northeastern South China Sea (nSCS) was conducted during the inter-monsoon period of May 2014 when the region was characterized by prevailing low-nutrient conditions. Comprehensive field measurements were made for not only hydrographic and biogeochemical properties but also phytoplankton growth and microzoo-plankton grazing rates. We also performed estimations of the vertical turbulent diffusivity and diffusive nutrient fluxes using a Thorpe-scale method and the upwelling nutrient fluxes by Ekman pumping using satellite-derived wind stress curl. Our results indicated a positive correlation between the integrated phytoplankton chlorophyll a and vertical nutrient fluxes in the offshore region of the nSCS during the study period. We generally found an increasing role of turbulent diffusion but a decreasing role of curl-driven upwelling in vertical transport of nutrients from the coastal ocean zones to the offshore pelagic zones. Elevated nutrient fluxes near Dongsha Islands supported high new production leading to net growth of the phytoplankton community, whereas the low fluxes near the southwest of Taiwan had resulted in a negative net community growth leading to decline of a surface phytoplankton bloom. Overall, phytoplankton dynamics in the large part of the nSCS could be largely driven by vertical nutrient fluxes including turbulent diffusion and curl-driven upwelling during the spring inter-monsoon period.
机译:在2014年5月的季风间期间,对南海东北部沿海海域至近海中上层海带进行了实地调查,当时该地区的特征是普遍存在低营养状况。不仅对水文和生物地球化学性质,而且对浮游植物的生长和微动物-浮游植物的放牧率,都进行了全面的实地测量。我们还使用Thorpe尺度法估算了垂直湍流扩散率和扩散性养分通量,并利用卫星派生的风应力卷曲通过埃克曼抽运估算了上升流中的养分通量。我们的结果表明,在研究期间,综合性浮游植物叶绿素a与nSCS海上区域的垂直养分通量之间呈正相关。我们通常发现湍流扩散的作用增加,而卷曲驱动的上升流在营养物从沿海海洋区域到近海中上层带的垂直运输中的作用减小。东沙群岛附近的养分通量升高支持了较高的新产量,导致了浮游植物群落的净增长,而台湾西南部附近的通量较低,导致了净群落的负增长,导致了浮游植物表层开花的减少。总体而言,nSCS大部分地区的浮游植物动力学很大程度上受春季季风间垂直营养流的影响,包括湍流扩散和卷曲驱动的上升流。

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