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Faroe Bank Channel Overflow: Mesoscale Variability

机译:法罗银行渠道溢出:中尺度变异

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The Faroe Bank Channel is the deepest connection through the Greenland-Scotland Ridge, where dense water formed north of the ridge flows southward over the sill crest, contributing to the formation of North Atlantic Deep Water. The overflow region is characterized by high mesoscale variability and energetic oscillations, accompanied by a high degree of sea surface level variability. Here, 2-month-long time series of velocity and temperature from 12 moorings deployed in May 2008 are analyzed to describe the oscillations and explore their generation and propagation. The observed 2.5-5-day oscillations in velocity and temperature are highly coherent both horizontally and vertically, and they are associated with 100-200-m-thick boluses of cold plume water flowing along the slope. A positive correlation between temperature and relative vorticity and the distribution of clockwise/counterclockwise rotation across the slope suggest a train of alternating warm cyclonic and cold anticyclonic eddies, where the maximum plume thickness is located downslope of the eddy center. The along-slope phase velocity is found to be 25-60 cms~(-1), corresponding to a wavelength of 75-180 km, while the vertical phase propagation is downward. The oscillations are present already in the sill region. The observations do not match predictions for eddies generated either by vortex stretching or baroclinic instability but agree broadly with properties of topographic Rossby waves.
机译:法罗河岸通道是穿过格陵兰-苏格兰海岭的最深连接,在海岭北部形成的浓水向南流过窗台ill,从而形成了北大西洋深水。溢流区的特征是高中尺度变化和高能振荡,伴随着高度的海面变化。在此,分析了来自2008年5月部署的12个系泊设备的两个月时间序列的速度和温度,以描述这种振荡并探讨它们的产生和传播。在水平和垂直方向观察到的2.5-5天的速度和温度波动都高度连贯,并且它们与沿坡道流过的100-200米厚的冷羽状水团有关。温度和相对涡度之间的正相关关系以及顺时针/逆时针旋转在整个斜坡上的分布表明,一系交替的热旋风和冷反旋风涡流,其中最大羽流厚度位于涡流中心的下坡。发现沿斜坡的相速度为25-60 cms〜(-1),对应于75-180 km的波长,而垂直相传播为向下。振动已经存在于门槛区域。这些观察结果与涡旋拉伸或斜压不稳定性产生的涡流的预测结果不符,但与地形Rossby波的性质基本一致。

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  • 来源
    《Journal of Physical Oceanography》 |2011年第11期|p.2137-2154|共18页
  • 作者单位

    Geophysical Institute, University of Bergen, and Bjerknes Center for Climate Research, Bergen, Norway;

    Geophysical Institute, University of Bergen, and Bjerknes Center for Climate Research, Bergen, Norway;

    University of Hamburg, Hamburg, Germany;

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