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Subpolar North Atlantic western boundary density anomalies and the Meridional Overturning Circulation

机译:亚北大西洋西部边界密度异常与经络翻转循环

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摘要

Changes in the Atlantic Meridional Overturning Circulation, which have the potential to drive societally-important climate impacts, have traditionally been linked to the strength of deep water formation in the subpolar North Atlantic. Yet there is neither clear observational evidence nor agreement among models about how changes in deep water formation influence overturning. Here, we use data from a trans-basin mooring array (OSNAP-Overturning in the Subpolar North Atlantic Program) to show that winter convection during 2014-2018 in the interior basin had minimal impact on density changes in the deep western boundary currents in the subpolar basins. Contrary to previous modeling studies, we find no discernable relationship between western boundary changes and subpolar overturning variability over the observational time scales. Our results require a reconsideration of the notion of deep western boundary changes representing overturning characteristics, with implications for constraining the source of overturning variability within and downstream of the subpolar region.
机译:大西洋经济倾覆流通的变化,具有推动社会重要气候影响的可能性,传统上与​​跨北大西洋的水平深水形成的力量有关。然而,既没有明确的观察证据,也没有关于深水形成如何影响推翻的模型之间的达成协议。在这里,我们使用来自跨盆地系泊阵列的数据(在亚体北大西洋计划中的OSNAP-OVERTURNING)来表明2014 - 2018年在内部盆地的冬季对流对深度西部界线的密度变化影响最小亚极盆地。与以前的建模研究相反,我们发现Western边界变化与观测时间尺度上的亚波拉倾覆可变异性没有可辨别的关系。我们的结果需要重新考虑代表推翻特征的深度西部边界变化的概念,这有助于限制亚极区域内和下游的翻转变异源。

著录项

  • 来源
    《Oceanographic Literature Review》 |2021年第7期|1421-1421|共1页
  • 作者

    F. Li; M.S. Lozier; S. Bacon;

  • 作者单位

    School of Earth and Atmospheric Sciences Georgia Institute of Technology Atlanta GA United States;

    School of Earth and Atmospheric Sciences Georgia Institute of Technology Atlanta GA United States;

    School of Earth and Atmospheric Sciences Georgia Institute of Technology Atlanta GA United States;

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