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大西洋中部陆架坡折锋面底部边界层分离的生化影响。

Biochemical implications of the Bottom Boundary Layer Detachment at the Mid-Atlantic Bight shelf-break front.

作者信息

Negroni Serena, McGillicuddy Dennis J, Gawarkiewicz Glen G, Oddo Paolo, Pinardi Nadia

机构信息

Department of Physics and Astronomy (DIFA), University of Bologna, Bologna, 40126, Italy.

MIT/WHOI Joint Program in Oceanography/Applied Ocean Sciences and Engineering, Woods Hole, 02543, MA, USA.

出版信息

Cont Shelf Res. 2025 Mar;286. doi: 10.1016/j.csr.2025.105408. Epub 2025 Jan 21.

Abstract

The Mid-Atlantic Bight frontal system along the U.S. northeast shelf is rich in biodiversity. In this region, primary production is influenced by a variety of upwelling processes, including internal instabilities of the front, off-shore forcing from Gulf Stream rings, and wind-driven flows. It is noteworthy that the concentrations of chlorophyll- ( ) in the shelf-break region are not consistently enhanced throughout the year, although local increases of phytoplankton biomass have been observed in some circumstances. In this work, we investigate the frontal dynamics of one of the possible mechanisms affecting primary production: upwelling via detachment of the Bottom Boundary Layer (BBL). The annual variability of the surface in the shelf-break region reveals a 5- to 20-day period, which is potentially consistent with nutrient upwelling associated with the BBL detachment. Details of the process are examined using data by quantifying along-isopycnal changes in properties. As frontal isopycnals rise in the water column, nitrate tends to decrease and tends to increase, suggesting utilization of upwelled nutrients by phytoplankton. However, significant fluctuations can be attributed to sample size, intrinsic data variability, and the assumption of homogeneity in the along-shelf dimension.

摘要

美国东北大陆架沿线的中大西洋湾锋面系统生物多样性丰富。在该区域,初级生产力受多种上升流过程影响,包括锋面的内部不稳定、湾流环离岸强迫以及风驱动流。值得注意的是,尽管在某些情况下观察到浮游植物生物量局部增加,但陆架坡折区域叶绿素 - (此处原文缺失具体内容)的浓度并非全年持续增强。在这项工作中,我们研究影响初级生产力的一种可能机制的锋面动力学:通过底部边界层(BBL)脱离实现的上升流。陆架坡折区域海面(此处原文缺失具体内容)的年变化显示出5至20天的周期,这可能与BBL脱离相关的营养物质上升流一致。通过量化等密面属性的沿等密面变化,利用(此处原文缺失具体数据类型)数据研究该过程的细节。随着锋面等密面在水柱中上升,硝酸盐往往减少,(此处原文缺失具体内容)往往增加,这表明浮游植物利用了上升流带来的营养物质。然而,显著的波动可归因于样本大小、数据固有变异性以及沿陆架维度的均匀性假设。

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