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Near-Surface Transport Pathways in the North Atlantic Ocean: Looking for Throughput from the Subtropical to the Subpolar Gyre

机译:北大西洋的近地表运输途径:寻找从亚热带到亚极涡流的通量

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摘要

Motivated by discrepancies between Eulerian transport estimates and the behavior of Lagrangian surface drifters, near-surface transport pathways and processes in the North Atlantic are studied using a combination of data, altimetric surface heights, statistical analysis of trajectories, and dynamical systems techniques. Particular attention is paid to the issue of the subtropical-to-subpolar intergyre fluid exchange. The velocity field used in this study is composed of a steady drifter-derived background flow, upon which a time-dependent altimeter-based perturbation is superimposed. This analysis suggests that most of the fluid entering the subpolar gyre from the subtropical gyre within two years comes from a narrow region lying inshore of the Gulf Stream core, whereas fluid on the offshore side of the Gulf Stream is largely prevented from doing so by the Gulf Stream core, which acts as a strong transport barrier, in agreement with past studies. The transport barrier near the Gulf Stream core is robust and persistent from 1992 until 2008. The qualitative behavior is found to be largely independent of the Ekman drift.
机译:由于欧拉运移估计值与拉格朗日地表漂泊者的行为之间存在差异,因此,结合数据,海拔高度,航迹的统计分析和动力系统技术,研究了北大西洋的近地表运输路径和过程。特别注意亚热带到亚极间旋回流体交换的问题。在这项研究中使用的速度场由稳定的漂移派生的背景流组成,在其上叠加了基于时间的基于高度计的扰动。该分析表明,两年内从亚热带回旋管进入亚极回旋管的大部分流体都来自墨西哥湾流岩心沿岸的狭窄区域,而墨西哥湾沿岸流体在很大程度上被墨西哥湾流核心阻止了。与过去的研究一致,海湾流核心是一个强大的运输屏障。从1992年到2008年,墨西哥湾流核心附近的运输屏障坚固且持久。发现其定性行为在很大程度上与Ekman漂移无关。

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  • 来源
    《Journal of Physical Oceanography》 |2011年第5期|p.911-925|共15页
  • 作者单位

    Woods Hole Oceanographic Institution, Woods Hole, Massachusetts;

    Woods Hole Oceanographic Institution, Woods Hole, Massachusetts;

    Earth and Ocean Sciences, Nicholas School of the Environment, Duke University, Durham, North Carolina;

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