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Testing the limits of quasi-geostrophic theory: application to observed laboratory flows outside the quasi-geostrophic regime

机译:测试准地转理论的局限性:在准地转制度之外的观测实验室流量中的应用

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We compare laboratory observations of equilibrated baroclinic waves in the rotating two-layer annulus, with numerical simulations from a quasi-geostrophic model. The laboratory experiments lie well outside the quasi-geostrophic regime: the Rossby number reaches unity; the depth-to-width aspect ratio is large; and the fluid contains ageostrophic inertia gravity waves. Despite being formally inapplicable, the quasi-geostrophic model captures the laboratory flows reasonably well. The model displays several systematic biases, which are consequences of its treatment of boundary layers and neglect of interfacial surface tension and which may be explained without invoking the dynamical effects of the moderate Rossby number, large aspect ratio or inertia gravity waves. We conclude that quasi-geostrophic theory appears to continue to apply well outside its formal bounds.
机译:我们将旋转的两层环空中平衡斜波的实验室观测结果与准地转模型的数值模拟进行了比较。实验室实验完全位于准地转制度之外:Rossby数达到1。纵横比大;并且流体中含有非营养惯性重力波。尽管在形式上不适用,但拟地转模型可以很好地捕获实验室流量。该模型显示了几个系统性偏差,这是其对边界层的处理和对界面表面张力的忽视的结果,并且可以在不调用中等Rossby数,大长宽比或惯性重力波的动力效应的情况下进行解释。我们得出的结论是,准地转理论似乎在其形式范围之外仍继续得到很好的应用。

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