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首页> 外文期刊>Journal of Physical Oceanography >Long Extratropical Planetary Wave Propagation in the Presence of Slowly Varying Mean Flow and Bottom Topography. Part Ⅰ: The Local Problem
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Long Extratropical Planetary Wave Propagation in the Presence of Slowly Varying Mean Flow and Bottom Topography. Part Ⅰ: The Local Problem

机译:在缓慢变化的平均流量和底部地形的情况下,长的温带行星行星传播。第一部分:局部问题

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One of the most successful theories to date to explain why observed planetary waves propagate westward faster than linear flat-bottom theory predicts has been to include the effect of background baroclinic mean flow, which modifies the potential vorticity waveguide in which the waves propagate. (Barotropic flows are almost everywhere too small to explain the observed differences.) That theory accounted for most, but not all, of the observed wave speeds. A later attempt to examine the effect of the sloping bottom on these waves (without the mean flow effect) did not find any overall speedup. This paper combines these two effects, assuming long (geostrophic) waves and slowly varying mean flow and topography, and computes group velocities at each point in the global ocean. These velocities turn out to be largely independent of the orientation of the wave vector. A second speedup of the waves is found (over that for mean flow only). Almost no eastward-oriented group velocities are found, and so features that appear to propagate in the same sense as a subtropical gyre would have to be coupled with the atmosphere or be density compensated in some manner.
机译:迄今为止,解释为何观测到的行星波向西传播的速度比线性平底理论所预测的更快的最成功理论之一就是包括背景斜压平均流的影响,该影响改变了波在其中传播的潜在涡度波导。 (各向同性的流动几乎都太小,不足以解释所观察到的差异。)该理论占了所观察到的波速的大部分,但不是全部。后来尝试检查倾斜的底部对这些波浪的影响(没有平均流量影响),但没有发现整体加速。本文假设长波(地转)和缓慢变化的平均流量和地形,将这两种影响结合起来,并计算了全球海洋中每个点的群速度。这些速度在很大程度上与波矢量的方向无关。发现了波浪的第二次加速(仅在平均流速之上)。几乎没有发现朝东的群速度,因此看起来以与亚热带回旋相同的方向传播的特征必须与大气耦合或以某种方式进行密度补偿。

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