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Estimating Subsurface Velocities from Surface Fields with Idealized Stratification

机译:通过理想化分层从表面场估计地下速度

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摘要

A previously published method by Wang et al. for predicting subsurface velocities and density from sea surface buoyancy and surface height is extended by incorporating analytical solutions to make the vertical projection. One solution employs exponential stratification and the second has a weakly stratified surface layer, approximating a mixed layer. The results are evaluated using fields from a numerical simulation of the North Atlantic. The simple exponential solution yields realistic subsurface density and vorticity fields to nearly 1000 m in depth. Including a mixed layer improves the response in the mixed layer itself and at high latitudes where the mixed layer is deeper. It is in the mixed layer that the surface quasigeostrophic approximation is most applicable. Below that the first baroclinic mode dominates, and that mode is well approximated by the analytical solution with exponential stratification.
机译:Wang等人先前发表的方法。通过合并分析解决方案以进行垂直投影,可以从海面浮力中预测地下速度和密度,并扩展了海面高度。一种解决方案采用指数分层,第二种解决方案具有弱分层的表面层,接近混合层。使用北大​​西洋的数值模拟中的字段评估结果。简单的指数解可产生接近1000 m深度的真实地下密度和涡度场。包含混合层可改善混合层本身以及在混合层较深的高纬度地区的响应。表面准地层近似最适用于混合层。在此之下,第一斜压模式占优势,并且该模式可以通过具有指数分层的解析解很好地近似。

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  • 来源
    《Journal of Physical Oceanography 》 |2015年第9期| 2424-2435| 共12页
  • 作者

    LaCasce J. H.; Wang J.;

  • 作者单位

    Univ Oslo, Dept Geosci, N-0315 Oslo, Norway;

    Univ Calif San Diego, Scripps Inst Oceanog, La Jolla, CA 92093 USA;

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  • 正文语种 eng
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