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Multiyear Subinertial and Seasonal Eulerian Current Observations near the Florida Big Bend Coast

机译:佛罗里达大弯海岸附近的多年次热带和季节性欧拉流变观测

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Multiyear in situ Eulerian acoustic Doppler current profiler measurements were obtained at 5-, 10-, and 19-m depths off the Big Bend coast, and in 19 m off the Florida Peninsula to the south. Analysis on subinertial time scales, dominated by weatherband frequencies, led to the following conclusions. At the 19-m Big Bend site (K-Tower), consistent with coastally trapped wave (CTW) theory, the along-isobath flow is not proportional to the local along-isobath wind stress, but rather to the alongshore wind stress t_(WFS)~y to the south along the west Florida shelf (WFS). At the southern 19-m site, consistent with previous work, the along-isobath flow is driven by t_(WFS)~y, but is weakened by an alongshore pressure gradient brake. Via CTW dynamics this brake is due to the abrupt "end" of the WFS at the Florida Keys. By contrast, along-isobath flow at the shallow 5-m site is driven by the local wind in a constant stress turbulent frictional layer. Because of the freshwater flux near the coast, density usually increases seaward. This leads to a strong asymmetry in the cross-isobath frictional bottom boundary layer (BBL) flow when the subinertial along-isobath flow direction changes. In one case the BBL flow is shoreward and gravitationally stable while, in the other, the BBL flow is gravitationally unstable as less dense water is forced under more dense water. Seasonal changes in the seaward horizontal density gradient also shear the seasonal along-isobath flow via thermal wind dynamics.
机译:多年原位欧拉声学多普勒电流剖面仪测量是在大本德(Big Bend)海岸外5、10和19 m处以及南部佛罗里达半岛19 m处进行的。对以天气带频率为主的亚惯性时间尺度的分析得出以下结论。在19米的大弯曲站点(K塔),与沿岸滞波(CTW)理论一致,沿等温线流量与局部沿等温线风应力不成比例,而是与沿岸风应力t_(沿西佛罗里达大陆架(WFS)向南延伸。在南部19 m处,与先前的工作一致,沿等温面流动由t_(WFS)〜y驱动,但被沿岸压力梯度制动减弱。通过CTW动力学,该刹车是由于佛罗里达群岛上WFS的突然“结束”。相比之下,在浅5-m处沿等静流流动由恒定应力湍流摩擦层中的局部风驱动。由于靠近海岸的淡水通量,密度通常会向海增加。当亚惯性沿等静压流动方向发生变化时,这会导致等静压摩擦底部边界层(BBL)流动的强烈不对称性。在一种情况下,BBL流动是向岸的且重力稳定,而在另一种情况下,由于密度较低的水被迫在密度较大的水之下,所以BBL流动在重力上不稳定。沿海水平密度梯度的季节性变化也会通过热风动力学来剪切季节性的沿等温线流动。

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  • 来源
    《Journal of Physical Oceanography 》 |2013年第8期| 1691-1709| 共19页
  • 作者单位

    Department of Earth, Ocean and Atmospheric Science, The Florida State University, Tallahassee, Florida;

    Department of Earth, Ocean and Atmospheric Science, The Florida State University, 433A Oceanography/Statistics Building, 117 North Woodward Avenue, P.O. Box 3064320, Tallahassee, FL 32306-4320;

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