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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Internal tide generation by seamounts, ridges, and islands
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Internal tide generation by seamounts, ridges, and islands

机译:海山,山脊和岛屿产生的内潮

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A numerical investigation is made into the generation of semidiurnal internal tides by tidal flow over steep topographic features in the deep ocean. A fully three-dimensional, free surface, nonlinear, hydrostatic model (the Princeton Ocean Model) is used with real stratification, representative tidal forcing, and Gaussian-shaped seamounts, ridges, and islands for the topography. The efficiencies of the different topographies in extracting energy from the barotropic tide and in generating an internal tide are considered. Each topography produces an internal tide characterized by signals propagating away from the feature as beams that follow internal wave characteristic paths. The strength of the signals, however, varies markedly for different topographies. This is largely attributed to the way in which the barotropic tide interacts with the three-dimensional topography Internal wave generation requires a significant vertical displacement of stratified water by the barotropic tide as it flows over topography. It is found that for symmetric seamounts and islands the barotropic flow tends to go around the feature, producing only a weak internal tide. When elongated into a ridge, barotropic flow is forced across isobaths, generating an energetic internal tide. Changing the horizontal aspect ratio of the topography from 1:1 (a seamount) to 3:1 (a ridge) increases the resulting baroclinic energy flux by nearly an order of magnitude. The slope of the topography relative to that of the internal wave characteristics is also shown to be important with strongest generation occurring at regions of critical or supercritical topographic slope.
机译:对深海陡峭地形特征上的潮汐流产生半日内潮进行了数值研究。使用完整的三维自由表面非线性静水模型(普林斯顿海洋模型),具有真实分层,代表性潮汐强迫以及高斯形海山,山脊和岛屿的地形。考虑了不同地形在从正压潮中提取能量和产生内潮中的效率。每个地形都会产生内部潮汐,其特征是信号从特征中传播出去,成为沿着内部波特征路径的光束。但是,信号的强度对于不同的地形有明显的变化。这主要归因于正压潮与三维地形相互作用的方式。内部波浪的产生需要正压潮在层状水流过地形时产生明显的垂直位移。发现对于对称的海山和岛屿,正压气流趋向于绕过该特征,仅产生内部弱潮。当拉长成山脊时,正压流被迫横穿等压线,产生一个充满活力的内部潮汐。将地形的水平纵横比从1:1(海山)更改为3:1(山脊),会使斜压能量通量增加近一个数量级。相对于内部波特征的地形坡度也很重要,在临界或超临界地形坡度的区域中产生的生成最强。

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