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Anticyclonic Eddies in the Alaskan Stream

机译:阿拉斯加溪流中的反气旋涡

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摘要

Anticyclonic eddies propagating southwestward in the Alaskan Stream (AS) were investigated through analysis of altimetry data from satellite observations during 1992-2006 and hydrographic data from profiling float observations during 2001-06. Fifteen long-lived eddies were identified and categorized based on their area of first appearance. Three eddies were present at the beginning of the satellite observations; another three formed in the eastern Gulf of Alaska off Sitka, Alaska; and four were first detected at the head of the Gulf of Alaska near Yakutat, Alaska. The other five eddies formed along the AS between 157° and 169°W, and were named AS eddies. While the eddies that formed in the Gulf of Alaska mainly decayed before exiting the Gulf of Alaska, the AS eddies mostly crossed the 180° meridian and reached the western subarctic gyre. Four of five AS eddies formed under negative or weakly positive wind stress curls, which possibly caused AS separation from the coast. Comparison of eddy propagation speeds in the AS with the bottom slope showed that eddies propagated faster over steeper slopes, although eddy speeds were slower than those predicted by the topographic planetary wave dispersion relation. An AS eddy wasobserved by profiling floats in the western subarctic gyre after it detached from the AS. Intermediate-layer water near the eddy center had low potential vorticity compared with the surrounding water, suggesting that AS eddies provided the western subarctic gyre with water just south of the Aleutian Islands.
机译:通过分析1992-2006年期间卫星观测的测高数据和2001-06年期间剖面浮标观测的水文数据,对在阿拉斯加溪流(AS)中向西南传播的反气旋涡进行了调查。根据首次出现的区域,确定并分类了15种长寿命的涡流。卫星观测开始时出现了三个涡流。另外三个在阿拉斯加锡特卡对面的阿拉斯加东部海湾形成;首先在阿拉斯加的雅库特附近的阿拉斯加湾的顶部发现了四个。沿AS在157°和169°W之间形成的其他五个涡流被称为AS涡流。虽然在阿拉斯加海湾形成的涡流在离开阿拉斯加海湾之前主要已经腐烂,但AS涡流大多越过了180°子午线并到达了北极西部的回转体。在负或弱正风应力卷曲下形成的五个AS涡中的四个,这可能导致AS与海岸分离。在AS与底部斜坡的涡流传播速度的比较表明,尽管涡流的速度比地形行星波频散关系所预测的慢,但在陡峭的斜坡上涡流的传播速度更快。在从北极脱离后,西部弧形下回旋中的浮标观察到了一个AS涡。与周围的水相比,涡流中心附近的中间层水的潜在涡度低,这表明AS涡流在阿留申群岛以南为西部北极圈回提供了水。

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  • 来源
    《Journal of Physical Oceanography》 |2009年第4期|934-951|共18页
  • 作者单位

    Institute of Observational Research for Global Change, Japan Agency for Marine-Earth Science and Technology, 2-15 Natsushima-cho, Yokosuka, Kanagawa 237-0061, Japan;

    Institute of Ocean Sciences, Fisheries and Oceans Canada, Sidney, British Columbia, Canada;

    Institute of Ocean Sciences, Fisheries and Oceans Canada, Sidney, British Columbia, Canada;

    Division of Marine Bioresource and Environmental Science, Graduate School of Fisheries Science,Hokkaido University, Hakodate, Japan;

    Institute of Observational Research for Global Change, Japan Agency for Marine-Earth Science and Technology, Yokosuka, Kanagawa, Japan Ocean Research Institute, University of Tokyo, Tokyo, Japan;

    Institute of Observational Research for Global Change, Japan Agency for Marine-Earth Science and Technology, Yokosuka, Kanagawa, Japan;

    Institute of Observational Research for Global Change, Japan Agency for Marine-Earth Science and Technology, Yokosuka, Kanagawa, Japan Department of Geophysics, Graduate School of Science, Tohoku University, Sendai, Japan;

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