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Fluid dynamics at the margin of rotational control

机译:旋转控制边缘的流体动力学

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Geophysicists have developed a perspective on the dynamical influence of Earth’s rotation, while most other areas of fluid dynamics can safely disregard rotation. In this essay the dominant turbulence and wave behaviors in the rotating and non-rotating fluid-dynamical realms are described, and particular attention is given to their borderlands, where rotational influences are significant but not dominant. Contrary to the inverse energy cascade of geostrophic turbulence toward larger scales, a forward energy cascade toward microscale dissipation develops within the borderlands from the breakdown of diagnostic force balances, frontogenesis, and frontal instabilities, and then it continues further through the small-scale non-rotating realm until it dissipates at the microscale.
机译:地球物理学家已经对地球自转的动力学影响提出了看法,而流体动力学的大多数其他领域可以放心地忽略自转。在本文中,描述了旋转和非旋转流体动力学领域中的主要湍流和波动行为,并特别注意了它们的边界,在这些边界中,旋转影响很大但并不占主导地位。与大尺度地转湍流的逆能量级联相反,边疆地区由于诊断力平衡,锋面生成和额叶不稳定性的破坏而向微尺度耗散的正向能量级联发展,然后继续通过小规模的非能量级联继续发展。旋转领域,直到它消散在微尺度上。

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