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Internal waves with high vertical wavenumber structure generated by diurnal tidal flow over the eastern ridge of Luzon Strait

机译:具有高垂直波数结构的内部波,由吕宋海峡东岭上的日潮流产生

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Internal waves with high vertical wavenumber structures on the northern part of the eastern ridge in Luzon Strait were investigated using shipboard observations and a wave propagation model. Detailed repeat observations across the ridge revealed complex undulations of isopycnals near the ridge that were characterized by vertically alternating concave and convex structures. In addition, strong eastward and westward flow areas with horizontal and vertical scales of 3–5?km and 150–250?m, respectively, occurred alternately on the downstream side of the ridge. These high-wavenumber structures in flow and density fields were associated with internal waves generated by interactions between diurnal tidal flow and the meridional submarine ridge in the strait; an acoustic Doppler current profiler recorded no signals of the Kuroshio Current and semi-diurnal tides in the zonal flow on the western slope of the eastern ridge. Many temperature inversions around the ridge exhibited vertical scales of predominantly?~?30?m. Simple calculations of internal wave motion reveal that each internal wave mode tends to stagnate near the summits of the ridge depending on the direction and strength of the background tidal flow. This suggests that the observed high-wavenumber structure in the flow profiles near the ridge is ascribed to the superposition of transient internal wave modes, although this is not the main cause of the temperature inversions. As a possible mechanism to explain the temperature inversions, we propose that higher-mode internal waves emanating from the unresolved topographic undulations are trapped by the observed high-wavenumber structures, resulting in turbulent mixing.
机译:使用船舶观测和波传播模型研究了吕宋海峡东部北部北部北部北部北部的内部波。横跨脊的详细的重复观察显示了通过垂直交替凹形和凸结构的脊靠近脊而附近的异构网的复杂起伏。此外,分别在脊的下游侧分别在3-5 km和150-250?m的水平和垂直尺度的强向和向西流动区域。流动和密度场中的这些高波纹结构与由昼夜潮流和海峡中的子午线山脊之间的相互作用产生的内部波;声学多普勒电流分析器在东部山脊的西坡的区域流动中没有记录Kuroshio电流和半昼夜潮汐的信号。脊周围的许多温度反转表现出主要的垂直尺度?〜?30?m。内部波动的简单计算揭示了每个内部波模式倾向于根据背景潮流的方向和强度在脊的峰值附近停滞不前。这表明,在脊附近的流动轮廓中观察到的高波数结构归因于瞬态内波模式的叠加,尽管这不是温度逆的主要原因。作为解释温度逆转的可能机制,我们提出从未解决的地形起伏发出的更高模式内波被观察到的高波数结构捕获,导致湍流混合。

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