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Observed Basin-Scale Response of the North Atlantic Meridional Overturning Circulation to Wind Stress Forcing

机译:观察到河北大西洋的盆地响应对风力强调的拓展流通

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摘要

The response of the North Atlantic meridional overturning circulation (MOC) to wind stress forcing is investigated from an observational standpoint, using four time series of overturning transports below and relative to 1000 m, overlapping by 3.6 yr. These time series are derived from four mooring arrays located on the western boundary of the North Atlantic: the RAPID Western Atlantic Variability Experiment (WAVE) array (42.5 degrees N), the Woods Hole Oceanographic Institution Line W array (39 degrees N), RAPID-MOC/MOCHA (26.5 degrees N), and the Meridional Overturning Variability Experiment (MOVE) array (16 degrees N). Using modal decompositions of the analytic cross-correlation between transports and wind stress, the basin-scale wind stress is shown to significantly drive the MOC coherently at four latitudes, on the time scales available for this study. The dominant mode of covariance is interpreted as rapid barotropic oceanic adjustments to wind stress forcing, eventually forming two counterrotating Ekman overturning cells centered on the tropics and subtropical gyre. A second mode of covariance appears related to patterns of wind stress and wind stress curl associated with the North Atlantic Oscillation, spinning anomalous horizontal circulations that likely interact with topography to form overturning cells.
机译:从观察角度调查了北大西洋经济倾斜循环(MOC)对风力应力强制的响应,使用以下四次推翻运输和相对于1000米,重叠为3.6倍。这些时间序列源自位于北大西洋西部边界的四个系泊阵列:快速的西部大西洋变异实验(波)阵列(42.5度N),树林孔海洋机构线W阵列(39摄氏度),快速-moc / mocha(26.5°N),以及子午线翻转可变性实验(移动)阵列(16℃)。使用模态分解运输和风力应力之间的分析互相关,显示盆地风压在本研究可用的时间尺度上显着地将MOC驱动。调节协方差的主导模式被解释为对风力应力强制的快速辐射海洋调整,最终形成两个逆向Ekman翻转细胞,以热带和亚热带的氛围为中心。与与北大西洋振荡相关的风力和风力卷曲模式有关的第二种协方差模式出现,旋转可能与地形相互作用以形成推翻细胞的异常水平循环。

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    《Journal of Climate》 |2017年第6期|共26页
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  • 正文语种 eng
  • 中图分类 气候学;
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