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Basin and Channel Contributions to a Model Antarctic Circumpolar Current

机译:南极极地洋流模型的盆地和航道贡献

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摘要

The idea that basinlike dynamics may play a major role in determining the Antarctic Circumpolar Current (ACC) transport is revisited. A simple analytic model is developed to describe the relationship between the wind stress and transport. At very low-wind stress, a nonzero minimum is predicted. This is followed by two distinct dynamical regimes for stronger forcing: 1) a Stommel regime in which transport increases linearly with forcing strength; and 2) a saturation regime in which the transport levels off. The baroclinic structure of the Sverdrup flux into the Drake Passage latitude band is central to the analytic model, and the geometry of characteristics, or geostrophic contours, is key to predicting the transition between the two regimes. A robustness analysis is performed using an eddy-permitting quasigeostrophic model in idealized geometries. Many simulations were carried out in large domains across a range of forcing strengths. The simulations agree qualitatively with the analytic model, with two main discrepancies being related to zonal jet structures and to a western boundary inertial recirculation. Eddy fluxes associated with zonal jets modify the baroclinic structure and lower the saturation transport value. Inertial effects increase the transport, although this effect is mainly limited to smaller domains.
机译:再次讨论了盆地动力学可能在确定南极绕极流(ACC)传输中起主要作用的想法。建立了一个简单的分析模型来描述风应力与运输之间的关系。在极低的风压下,预计非零最小值。其次是两个不同的动力机制,它们可增强力度:1)Stommel态,其传输力随强迫强度线性增加; 2)饱和状态,其中传输平稳。进入德雷克海峡纬度带的Sverdrup通量的斜压结构是分析模型的核心,特征的几何形状或地转等高线是预测这两种情况之间过渡的关键。鲁棒性分析是在理想的几何结构中使用允许涡流的准地转模型进行的。许多模拟都是在较大范围内进行的,其作用力范围广泛。这些模拟在质量上与分析模型一致,其中两个主要差异与纬向射流结构和西边界惯性再循环有关。与纬向射流相关的涡通量改变了斜压构造并降低了饱和输运值。惯性效应增加了运输,尽管这种效应主要限于较小的区域。

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  • 来源
    《Journal of Physical Oceanography》 |2009年第4期|986-1002|共17页
  • 作者单位

    Department of Atmospheric and Oceanic Sciences, McGill University, 805 Sherbrooke Street West, Montreal QC H2W 1S9, Canada;

    Department of Atmospheric and Oceanic Sciences, McGill University, Montreal, Quebec, Canada;

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