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Comparison of variational balance models for the rotating shallow water equations

机译:旋转浅水方程组的变分平衡模型比较

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摘要

We present an extensive numerical comparison of a family of balance models appropriate to the semi-geostrophic limit of the rotating shallow water equations, and derived by variational asymptotics in Oliver (, vol. 551, 2006, pp. 197–234) for small Rossby numbers . This family of generalized large-scale semi-geostrophic (GLSG) models contains the -model introduced by Simon (, vol. 132, pp. 431-444) as a special case. We use these models to produce balanced initial states for the full shallow water equations. We then numerically investigate how well these models capture the dynamics of an initially balanced shallow water flow. It is shown that, whereas the -member of the GLSG family is able to reproduce the balanced dynamics of the full shallow water equations on time scales of () very well, all other members develop significant unphysical high wave number contributions in the ageostrophic vorticity which spoil the dynamics.
机译:我们提出了一个适合于旋转浅水方程的半地转极限的平衡模型族的广泛数值比较,并由Oliver的变分渐近性推导(第551卷,2006年,第197-234页)。数字。该系列的广义大规模半地转(GLSG)模型包含由Simon(,132卷,431-444页)作为特例引入的-model。我们使用这些模型为整个浅水方程生成平衡的初始状态。然后,我们通过数值研究这些模型如何很好地捕获最初平衡的浅水流的动力学。结果表明,尽管GLSG族的-成员能够很好地再现()时间尺度上的完整浅水方程组的平衡动力学,但所有其他成员都在成年旋涡中产生了重要的非物理高波数贡献,破坏动力。

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