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首页> 外文期刊>Journal of Physical Oceanography >Near-Inertial Waves on the New England Shelf: The Role of Evolving Stratification, Turbulent Dissipation, and Bottom Drag
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Near-Inertial Waves on the New England Shelf: The Role of Evolving Stratification, Turbulent Dissipation, and Bottom Drag

机译:新英格兰大陆架上的近惯性波浪:分层发展,湍流消散和底阻力的作用

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Energetic variable near-inertial internal waves were observed on the springtime New England shelf as part of the Coastal Mixing and Optics (CMO) project. Surface warming and freshwater advection tripled the average stratification during a 3-week observational period in April/May 1997. The wave field was dominated by near-inertial internal waves generated by passing storms. Wave evolution was controlled by a balance among wind stress, bottom drag, and turbulent dissipation. As the stratification evolved, the vertical structure of these near-inertial waves switched from mode 1 to mode 2 with associated changes in the magnitude and location of wave shear. The growth of mode-2 waves was attributable to a combination of changing wind stress forcing and a nonlinear coupling between the first and second vertical modes through quadratic bottom stress. To explore both forcing mechanisms, an open-ocean mixed layer model is adapted to the continental shelf. In this model, surface wind stress and bottom stress are distributed over the surface and bottom mixed layers and then projected onto orthogonal vertical modes. The model replicates the correct magnitude and evolving modal distribution of the internal waves and confirms that bottom stress can act to transfer energy between internal wave modes.
机译:作为海岸混合与光学(CMO)项目的一部分,在春季的新英格兰架子上观测到了高能近惯性内波。在1997年4月/ 5月的3周观察期内,地表变暖和淡水平流使平均分层增加了三倍。波场主要由暴风雨产生的近惯性内波所控制。波的演化受风应力,底部阻力和湍流耗散之间的平衡控制。随着分层的发展,这些近惯性波的垂直结构从模式1切换到模式2,并伴随着波切变的幅度和位置的变化。模式2波的增长归因于不断变化的风应力强迫和通过二次底部应力在第一和第二垂直模式之间的非线性耦合。为了探索这两种强迫机制,将开放海洋混合层模型应用于大陆架。在该模型中,表面风应力和底部应力分布在表面和底部混合层上,然后投影到正交垂直模式上。该模型复制了内部波的正确幅度和不断变化的模态分布,并确认底部应力可以起到在内部波模之间传递能量的作用。

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