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Vertical structure of eddies and Rossby waves, and their effect on the Atlantic meridional overturning circulation at 26.5°N

机译:涡旋和Rossby波的垂直结构及其对26.5°N时大西洋经向翻转环流的影响

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摘要

The meridional overturning circulation (MOC) at inline image in the Atlantic has a standard deviation of 4.9 Sv and contains large fluctuations at subannual periods. The geostrophic component of the MOC is believed to be influenced on subannual time scales by eddies and Rossby waves. To quantify this effect, the vertical structure and surface characteristics of westward propagating signals are studied using altimetric data and full-depth mooring measurements from the RAPID array at inline image. Westward propagating features are observed in the western North Atlantic in both data sets and have periods of 80–250 days in the first baroclinic mode. These features are still observed by the RAPID moorings 20 km offshore of the western boundary. The western boundary also exhibits deep variability characterized by enhanced energy in higher baroclinic modes. The effect of eddies and Rossby waves on the geostrophic transport is quantified by representing their vertical structure with the first baroclinic mode. In total, 42% of the variance of the transbasin thermocline transport inferred from geostrophic calculations at inline image can be attributed to first mode variability, which is associated with eddies and Rossby waves at periods of 80–250 days. The standard deviation of the transbasin thermocline transport due to eddies and Rossby waves is estimated to be 2.6 Sv.
机译:大西洋在线图像中的子午向上翻转循环(MOC)的标准偏差为4.9 Sv,并且在次年周期内波动较大。据信,MOC的地转成分受涡流和Rossby波影响的一年期时间尺度。为了量化这种影响,使用了高空数据和在线图像中RAPID阵列的全深度系泊测量值,研究了向西传播信号的垂直结构和表面特征。在两个数据集中,在北大西洋西部均观察到向西传播特征,并且在第一个斜斜模式下具有80-250天的周期。这些特征仍被西部边界海上20 km的RAPID系泊所观察到。西部边界也表现出深度变化,其特征是在较高斜压模式下能量增加。涡流和Rossby波对地转运动的影响可以通过用第一斜压模式表示其垂直结构来量化。总的来说,在线图像中的地转计算推算出的跨流域温跃层输运的变化的42%可以归因于第一模态变异性,这与80-250天周期的涡流和Rossby波有关。由于涡流和Rossby波的影响,跨流域跃层跃迁的标准偏差估计为2.6 Sv。

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