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An inflated subpolar gyre blows life toward the northeastern Atlantic

机译:充气的极地回旋将生命吹向东北大西洋

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摘要

Deep convection in the Labrador and Irminger Seas inflates the cold and low-saline subpolar gyre, which is a rich nutrient and zooplankton source for the surrounding warmer waters of subtropical origin. The zooplankton abundances on the south Iceland shelf show characteristic sub-decadal variability, which closely reflect the oceanic abundances of the ecologically most important zooplankton species Calanus finmarchicus. Much higher abundances of this species are observed during years when the winter mixed layer depths (MLD) in the Labrador-Irminger Sea, and over the Reykjanes Ridge are deep. Furthermore, a tight relationship is identified between on-shelf zooplankton abundances and lateral shifts of the biologically productive subarctic front southwest of Iceland. Thus, we suggest that northeast-ward expansion of the subpolar gyre results in biologically productive periods in the waters southwest of Iceland both oceanic and on the shelf. In addition to local atmospheric forcing, we find that the MLD and frontal position are also impacted by remote heat losses and convection in the Labrador Sea, through northward advection of unstable mode waters. The sub-decadal oceanic and on-shelf biological production peaks are possibly predictable by half a year (local winter convection to subsequent summer production), and the advective time-lag from the Labrador Sea might induce an even longer predictability horizon (up to 1.5 years). Crown Copyright (C) 2016 Published by Elsevier Ltd. All rights reserved.
机译:拉布拉多和艾明格海的深对流使寒冷低盐的亚极回旋膨胀,这是亚热带起源周围较温暖水域的丰富营养和浮游动物来源。冰岛南部陆架上的浮游动物丰度显示出年代际变化特征,这些变化紧密地反映了生态上最重要的浮游动物Calanus finmarchicus的海洋丰度。在拉布拉多-艾明格海和雷克雅尼斯海岭上空的冬季混合层深度(MLD)较深的年份中,该物种的丰度更高。此外,在架上浮游动物的丰度与冰岛西南部具有生物生产能力的北极前锋的横向偏移之间发现了紧密的关系。因此,我们认为,亚极回旋的东北向扩张导致了冰岛西南海域海洋和陆架的生物生产期。除了局部大气强迫外,我们还发现,通过不稳定模式水的北向平流,拉布拉多海的远距离热损失和对流也会影响MLD和正面位置。近十年来,近十年的海洋和陆上生物生产高峰可能是可预测的(当地冬季对流至随后的夏季生产),而拉布拉多海的平流时滞可能会导致更长的可预测范围(可达1.5)年份)。 Crown版权所有(C)2016,由Elsevier Ltd.发行。保留所有权利。

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  • 来源
    《Progress in Oceanography》 |2016年第9期|49-66|共18页
  • 作者单位

    Faroe Marine Res Inst, Box 3051, FO-110 Torshavn, Faroe Islands, Denmark|Max Planck Inst Meteorol, Hamburg, Germany;

    Max Planck Inst Meteorol, Hamburg, Germany;

    Max Planck Inst Meteorol, Hamburg, Germany;

    Max Planck Inst Meteorol, Hamburg, Germany;

    Faroe Marine Res Inst, Box 3051, FO-110 Torshavn, Faroe Islands, Denmark|Univ Gothenburg, Dept Marine Sci, Gothenburg, Sweden;

    Univ Hamburg, Hamburg, Germany;

    Marine Res Inst, IS-101 Reykjavik, Iceland;

    Univ Iceland, Inst Earth Sci, Reykjavik, Iceland;

    Sir Alister Hardy Fdn Ocean Sci, Plymouth, Devon, England|Univ Plymouth, Inst Marine, Plymouth, Devon, England|Marine Biol Assoc UK, Plymouth, Devon, England;

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