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Performance of One-Way and Two-Way Nesting Techniques Using the Shelf Circulation Modelling System for the Eastern Canadian Shelf

机译:使用加拿大东部大陆架货架循环建模系统的单向和双向筑巢技术的性能

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摘要

The performance of one-way and two-way nesting techniques is assessed in this study using model results produced by a regional ocean circulation modelling system for the eastern Canadian shelf. The assessment is made in terms of dynamical consistency between the parent model (PM) and child model (CM), representation of general circulation features, and reduction of numerical noise generated during the interaction of the PM and CM. It is demonstrated that the feedback from the CM to the PM in numerical experiments using two-way nesting ensures that the large-scale circulation produced by the PM and CM be dynamically consistent over the region where the two model domains overlap. In comparison with one-way nesting, two-way nesting leads to a better representation of coastal currents over the Gulf of St. Lawrence and the Scotian Shelf and improves the large-scale circulation in the results produced by the PM. This study also examines an alternative two-way nesting technique based on the semi-prognostic method in which differences between the PM and CM densities are used to adjust the horizontal momentum balance in the PM. Model results demonstrate the advantage of the semi-prognostic method in eliminating numerical noise during the feedback from the CM to PM while ensuring dynamical consistency between the two model components.
机译:本研究使用加拿大东部陆架区域海洋环流建模系统产生的模型结果评估了单向和双向嵌套技术的性能。评估是根据父模型(PM)和子模型(CM)之间的动态一致性,总体循环特征的表示以及PM和CM交互过程中生成的数字噪声的减少来进行的。结果表明,在使用双向嵌套的数值实验中,从CM到PM的反馈确保了PM和CM产生的大规模循环在两个模型域重叠的区域上是动态一致的。与单向嵌套相比,双向嵌套可以更好地表示圣劳伦斯湾和斯科蒂尔货架上的沿海水流,并改善PM产生的结果的大规模环流。这项研究还研究了一种基于半预测方法的双向嵌套技术,其中,PM和CM密度之间的差异用于调整PM中的水平动量平衡。模型结果表明,半预测方法的优势在于消除了从CM到PM的反馈过程中的数值噪声,同时确保了两个模型组件之间的动态一致性。

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