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Vorticity Structures in the Tropical Pacific from a Numerical Simulation

机译:基于数值模拟的热带太平洋涡度结构

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摘要

The small-scale variability of the tropical Pacific is studied with the simulations from a numerical model in terms of vorticity structures. A Lagrangian method based on the Okubo-Weiss parameter is used to identify the structures and track their main characteristics. Between 8°S and 8°N, the structure characteristics are spatially inhomogeneous compared to higher latitudes. They can be grouped into three categories: anticyclonic and cyclonic structures off the equator and the equatorial structures between 2°S and 2°N. They all have a strong annual cycle with maximum presence from September to March, except during strong El Nino years, when the number of structures becomes very low. Off the equator from 2° to 8°, the anticyclonic structures dominate, but with drastically different characteristics north and south of the equator. In the north, large nonlinear vortices develop (known as the tropical instability vortices) in phase with the 30-35-day oscillation related to an unstable first-meridional-mode Rossby waves. In the south, mostly fragmentary linear structures are present, with lower propagation speeds. The equatorial structures are mostly counterclockwise. The larger ones tend to be linear and are clearly associated with Yanai waves. The large majority of the cyclonic structures off the equator are also quite linear and smaller and less numerous than the anticyclonic structures. However, some of them are nonlinear with vorticity values higher than 2 times the Coriolis parameter.
机译:利用涡度结构数值模型的模拟研究了热带太平洋的小尺度变化。基于Okubo-Weiss参数的拉格朗日方法用于识别结构并跟踪其主要特征。在8°S和8°N之间,与较高的纬度相比,结构特征在空间上是不均匀的。它们可以分为三类:赤道外的反气旋和气旋结构以及2°S和2°N之间的赤道结构。他们的年度周期都很强劲,从9月到3月最多,除了在强劲的厄尔尼诺(El Nino)年期间,那时建筑物的数量非常少。从2°到8°偏离赤道,反气旋结构占主导,但在赤道以北和以南,特征却截然不同。在北部,大型非线性涡旋(称为热带不稳定涡旋)与与不稳定的第一经向Rossby波有关的30-35天振荡同相发展。在南部,主要存在零散的线性结构,传播速度较低。赤道结构大多是逆时针方向。较大的波趋于线性,并明显与柳井波有关。与反气旋结构相比,离开赤道的绝大多数气旋结构也相当线性,更小且数量更少。但是,其中一些是非线性的,其涡度值高于Coriolis参数的2倍。

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  • 来源
    《Journal of Physical Oceanography》 |2011年第8期|p.1455-1464|共10页
  • 作者

    Clement Ubelmann; Lee-Lueng Fu;

  • 作者单位

    Jet Propulsion Laboratory, California Institute of Technology, Pasadena, California;

    Jet Propulsion Laboratory, California Institute of Technology, Pasadena, California;

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  • 正文语种 eng
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