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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Temporal and Spatial Variability of Near-Inertial Waves in the East/Japan Sea From a High-Resolution Wind-Forced Ocean Model
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Temporal and Spatial Variability of Near-Inertial Waves in the East/Japan Sea From a High-Resolution Wind-Forced Ocean Model

机译:从高分辨率风迫海洋模型的东/日本海域近惯性波浪的时间和空间变异

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摘要

Near-inertial waves (NIWs), a fundamental oceanic response to wind forcing, play an important role in dynamical processes related to ocean mixing and hence have attracted sustained interest. Herein, we investigate temporally and spatially varying NIW distributions in the mixed and deep layers of the East/Japan Sea (EJS) using high-resolution hourly-wind-forced data-assimilated ocean model outputs. Temporally, the kinetic energy of NIWs in the mixed and deep layers is higher in fall and winter than in spring and summer, showing maxima in December, corresponding to wind forcings of both wind stress and wind-current resonance. Spatially, the NIW energy in the mixed layer is higher on the northern side of the subpolar front (SPF), although there are no significant spatial differences in the wind forcings. Because of intensive background currents and their vorticities in the upper layer on the southern side of the SPF, vertical transfer of NIW energy is facilitated, shown by a shorter e-folding decay time scale of NIWs in the mixed layer on the southern side of the SPF. The NIW kinetic energy in the deep layer of 400-1,000 m is higher on the southern side than on the northern side, an opposite spatial pattern to that in the mixed layer, but consistent with a previous observational study. Our results confirm that energetic anticyclonic circulations with negative relative vorticity in the upper layer on the southern side enable vertical penetration of NIW energy from the mixed layer to the deep layer more effectively.
机译:近惯性波(NIWS),对风强迫的基本海洋反应,在与海洋混合相关的动态过程中发挥着重要作用,因此引起了持续的兴趣。在此,我们使用高分辨率小时风力强制数据同化的海洋模型输出在时间上和空间不同的NIW分布在时间上和空间不同的NIW分布。在暂时的情况下,秋季和冬季的混合和深层中NiWS的动能比春季和夏天更高,在12月份显示最大值,对应于风力应力和风电流共振的风强调。在空间上,混合层中的NiW能量在亚极前部(SPF)的北侧较高,尽管风强势没有显着的空间差异。由于密集的背景电流和它们在SPF南侧上层的上层的涡流,促进了NIW能量的垂直转移,通过较短的E折叠衰减时间等级的混合层中的南侧的混合层中的较短的电子折叠衰减时间等级所示SPF。在南侧的南侧的深层中的NiW动能比在北侧,在混合层中的相对的空间模式,但与先前的观察性研究一致。我们的结果证实,南侧上层中的具有负相对涡度的能量反转循环能够更有效地从混合层垂直渗透NiW能量。

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