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首页> 外文期刊>Journal of Physical Oceanography >Spontaneous Wave Generation at Strongly Strained Density Fronts
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Spontaneous Wave Generation at Strongly Strained Density Fronts

机译:在强应变密度前沿产生自发波

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A simple analytical model is presented describing the spontaneous generation of inertia-gravity waves at density fronts subjected to strong horizontal strain rates. The model considers fronts of arbitrary horizontal and vertical structure in a semi-infinite domain, with a single boundary at the ocean surface. Waves are generated because of the acceleration of the steady uniform strain flow around the density front, analogous to the generation of lee waves via flow over a topographic ridge. Significant wave generation only occurs for sufficiently strong strain rates > 0.2f and sharp fronts H/L > 0.5f/N, where f is the Coriolis parameter, N is the stratification, and H and L are the height and width scales of the front, respectively. The frequencies of the generated waves are entirely determined by the strain rate. The lowest-frequency wave predicted to be generated via this mechanism has a Lagrangian frequency = 1.93f as measured in a reference frame moving with the background strain flow. The model is intended as a first-order description of wave generation at submesoscale (1 to 10 km wide) fronts where large strain rates are commonplace. The analytical model compares well with fully nonlinear numerical simulations of the submesoscale regime.
机译:提出了一个简单的分析模型,该模型描述了承受强水平应变率的密度前沿处自发产生的惯性重力波。该模型考虑了半无限域中任意水平和垂直结构的前沿,并且在海洋表面具有单个边界。由于围绕密度前沿的稳定均匀应变流的加速,产生了波,这类似于通过地形脊上的流产生的背风波。只有在足够强的应变速率> 0.2f和锋利的前沿H / L> 0.5f / N时,才会发生显着的波产生,其中f是科里奥利参数,N是分层,H和L是前沿的高度和宽度比例, 分别。产生的波的频率完全取决于应变率。预测通过此机制生成的最低频率波具有拉格朗日频率= 1.93f,这是在随背景应变流移动的参考框架中测得的。该模型旨在作为对次应变范围(1至10 km宽)前沿的波浪产生的一阶描述,在该处普遍存在较大的应变率。该分析模型与亚中尺度状态的完全非线性数值模拟进行了很好的比较。

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