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首页> 外文期刊>Journal of Physical Oceanography >North Atlantic Barotropic Vorticity Balances in Numerical Models
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North Atlantic Barotropic Vorticity Balances in Numerical Models

机译:数值模型中的北大西洋正压涡度天平

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摘要

Numerical simulations are conducted across model platforms and resolutions with a focus on the North Atlantic. Barotropic vorticity diagnostics confirm that the subtropical gyre is characterized by an inviscid balance primarily between the applied wind stress curl and bottom pressure torque. In an area-integrated budget over the Gulf Stream, the northward return flow is balanced by bottom pressure torque. These integrated budgets are shown to be consistent across model platforms and resolution, suggesting that these balances are robust. Two of the simulations, at 100- and 10-km resolutions, produce a more northerly separating Gulf Stream but obtain the correct integrated vorticity balances. In these simulations, viscous torque is nonnegligible on smaller scales, indicating that the separation is linked to the details of the local dynamics. These results are shown to be consistent with a scale analysis argument that suggests that the biharmonic viscous torque in particular is upsetting the inviscid balance in simulations with a more northerly separation. In addition to providing evidence for locally controlled inviscid separation, these results provide motivation to revisit the formulation of subgrid-scale parameterizations in general circulation models.
机译:跨模型平台和分辨率进行了数值模拟,重点是北大西洋。正压涡度诊断证实,亚热带回旋的特征是主要在施加的风应力卷曲和底部压力转矩之间没有不明显的平衡。在墨西哥湾流地区综合预算中,向北的回流与底压力扭矩平衡。这些综合预算显示出在各个模型平台和解决方案上都是一致的,表明这些平衡是可靠的。其中两个模拟分别以100公里和10公里的分辨率产生了较北向分离的墨西哥湾流,但获得了正确的综合涡度平衡。在这些模拟中,在较小的比例下,粘性转矩是不可忽略的,这表明分离与局部动力学的细节有关。结果表明,这些结果与比例分析论点一致,该论点表明,双谐波粘性扭矩尤其会使模拟中的无粘性平衡更加偏北。除了为局部控制的无粘性分离提供证据外,这些结果还提供了重新审视一般环流模型中亚网格规模参数化公式的动机。

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