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Net primary production in the Gulf Stream sustained by quasi-geostrophic vertical exchanges

机译:准地转垂直交换维持的湾流净初级生产

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摘要

© 2015. American Geophysical Union. All Rights Reserved. We analyze 12-years of mesoscale vertical motion derived from an observation-based product in the top 1000-m of the North West Atlantic Ocean. Vertical velocities (O(10-m-d-1)) associated with Gulf Stream instabilities consist of alternating cells of upwelling and downwelling. Here we show that the magnitude of the vertical motions decays exponentially southward with an e-folding length scale that is informative on the dynamics of the system. We further investigate the impact of the vertical supply of nutrients about phytoplankton growth with a conceptual model incorporating the mean effect of nutrient distribution, quasi-geostrophic dynamics, and Ekman suction/pumping. Results confirm that the mean effect of mesoscale vertical velocity variability alone can sustain observed levels of net primary production in the immediate vicinity of the Gulf Stream, while other mechanisms, including horizontal advection and submesoscale dynamics, need to be considered when moving toward the subtropical gyre.
机译:©2015。美国地球物理联盟。版权所有。我们分析了西北大西洋顶部1000米以观测为基础的产品产生的12年中尺度垂直运动。与湾流不稳定性相关的垂直速度(O(10-m-d-1))由上升和下降的交替单元组成。在这里,我们显示了垂直运动的幅度以电子折叠长度尺度向南呈指数衰减,该尺度对系统的动力学提供了信息。我们进一步研究了营养素垂直供应对浮游植物生长的影响,并采用了包含营养素分布,准地转营养动力学和埃克曼抽吸/抽水的平均效应的概念模型。结果证实,仅中尺度垂直速度变化的平均效应就可以维持在墨西哥湾流附近的观测到的净初级生产力水平,而向副热带涡旋运动时还需要考虑其他机制,包括水平对流和亚中尺度动力学。

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