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Two-way nesting in split-explicit ocean models: Algorithms, implementation and validation

机译:明确海洋模型中的双向嵌套:算法,实现和验证

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摘要

A full two-way nesting approach for split-explicit, free surface ocean models is presented. It is novel in three main respects: the treatment of grid refinement at the fast mode (barotropic) level; the use of scale selective update schemes; the conservation of both volume and tracer contents via refluxing. An idealized application to vortex propagation on a β plane shows agreement between nested and high resolution solutions. A realistic application to the California Current System then confirm these results in a complex configuration. The selected algorithm is now part of ROMS_AGRIF. It is fully consistent with ROMS par-allel capabilities on both shared and distributed memory architectures. The nesting implementation authorizes several nesting levels and several grids at any particular level. This operational capability, combined with the inner qualities of our two-way nesting algorithm and generally high-order accuracy of ROMS numerics, allow for realistic simulation of coastal and ocean dynamics at multiple, interacting scales.
机译:提出了一个完整的双向嵌套方法,用于显式,自由表面海洋模型。它在三个主要方面是新颖的:快速模式(正压)级的网格细化处理;使用规模选择性更新方案;通过回流保留体积和示踪剂含量。在β平面上涡旋传播的理想应用显示了嵌套解和高分辨率解之间的一致性。实际应用到“加利福尼亚现行系统”中,然后以复杂的配置确认了这些结果。现在,所选算法是ROMS_AGRIF的一部分。它与共享和分布式内存体系结构上的ROMS并行功能完全一致。嵌套实现授权多个嵌套级别和任何特定级别的多个网格。这种操作能力再加上我们双向嵌套算法的内在品质以及ROMS数值的一般高阶精度,可以在多个相互影响的尺度上逼真的模拟海岸和海洋动力学。

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