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Influence of numerical schemes on current-topography interactions in 1/4° global ocean simulations

机译:数值方案对1/4°全球海洋模拟中当前地形相互作用的影响

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The combined use of partial steps and of an energy-enstrophy conserving momentum advection scheme was shown by Barnier et al. (2006) to yield substantial improvements in the surface solution of the DRAKKAR ?° global sea-ice/ocean model. The present study extends this investigation below the surface with a special focus on the Atlantic and reveals many improvements there as well: e.g. more realistic path, structure and transports of major currents (Gulf Stream, North Atlantic Current, Confluence region, Zapiola anticyclone), behavior of shedded rings, narrower subsurface boundary currents, stronger mean and eddy flows (MKE and EKE) at depth, beneficial enhancement of cyclonic (anticyclonic) flows around topographic depressions (mountains). Interestingly, adding a no-slip boundary condition to this improved model setup cancels most of these improvements, bringing back the biases diagnosed without the improved momentum advection scheme and partial steps (these biases are typical of other models at comparable or higher resolutions). This shows that current-topography interactions and full-depth eddy-admitting model solutions can be seriously deteriorated by near-bottom sidewall friction, either explicit or inherent to inadequate numerical schemes.
机译:Barnier等人展示了部分步骤和能量熵守恒动量对流方案的组合使用。 (2006年)对DRAKKAR?全球海冰/海洋模型的表面解决方案进行了实质性改进。本研究将这项研究扩展到了地表以下,重点是大西洋,并揭示了许多改进之处:主要水流(海湾水流,北大西洋水流,汇合区,Zapiola反气旋)的更现实的路径,结构和传输,脱落环的行为,更窄的地下边界流,更强的深度平均涡流(MKE和EKE),有益的增强气旋(反气旋)绕地形凹陷(山)流动。有趣的是,在此改进的模型设置中添加无滑移边界条件会取消大多数此类改进,从而在没有改进的动量对流方案和局部步幅的情况下恢复诊断出的偏差(这些偏差是其他模型的可比较或更高分辨率的典型值)。这表明,由于近似底部的侧壁摩擦(无论是明显的数值模型还是固有的数值方案),当前的地形相互作用和全深度涡流允许的模型解都可能严重恶化。

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