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Deep Currents in the Bay of Campeche

机译:坎佩切湾深水流

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摘要

Data from five moorings deployed in the Bay of Campeche during November 2007-July 2008 are used to analyze subinertial motions of waters below 1000-m depth. To the authors' knowledge, this is the first time such a comprehensive observational program of direct deep-current measurements has been carried out in the region. The mean currents are in agreement with a cyclonic circulation at 1000-m depth; however, this cyclonic pattern is not so clearly defined at deeper levels. Only at the deepest mooring, located at 3500-m depth, are the mean currents uniform all the way to the bottom. Over the Bay of Campeche's smooth western slope, currents show features compatible with topographic Rossby waves having vertical trapping scales thicker than 700 m, periods between 5 and 60 days, and horizontal wavelengths of 90-140 km. In contrast, the eastern slopes are characterized by rough topography, and motions with periods longer than 28 days decrease toward the bottom, suggesting a substantial reduction in the low-frequency topographic Rossby wave signal. Velocities from one of the two neighboring moorings located over the eastern rough slope have a strong 3-day period signal, which increases toward the bottom and has a vertical trapping scale of about 350 m. These higher frequency motions are interpreted in terms of edge waves.
机译:2007年11月至2008年7月在坎佩切湾部署的五个系泊设备的数据用于分析1000米以下水域的亚惯性运动。据作者所知,这是该地区首次进行这种直接的深电流测量的综合观测程序。平均电流与深度为1000 m的气旋循环一致。但是,这种旋风模式在更深层次上并没有那么清晰地定义。仅在3500米深处的最深系泊处,平均电流才一直均匀到底部。在坎佩切湾平滑的西坡上,洋流显示出的特征与具有垂直诱捕尺度大于700 m,周期为5至60天,水平波长为90-140 km的地形Rossby波兼容。相反,东部斜坡的特征是地势粗糙,超过28天的运动朝底部减小,这表明低频地形的Rossby波信号显着减小。位于东部粗糙斜坡上的两个相邻系泊之一的速度具有强烈的3天周期信号,该信号向底部增大并具有约350 m的垂直圈闭范围。这些较高频率的运动根据边波来解释。

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  • 来源
    《Journal of Physical Oceanography》 |2011年第10期|p.1902-1920|共19页
  • 作者单位

    Departamento de Oceanografia Fisica, CICESE, Ensenada, Mexico;

    Departamento de Oceanografia Fisica, CICESE, Ensenada, Mexico;

    Departamento de Oceanografia Fisica, CICESE, Ensenada, Mexico;

    Departamento de Oceanografia Fisica, CICESE, Ensenada, Mexico;

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