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Laboratory-numerical studies of stratified spin-up flows

机译:分层旋转流的实验室数值研究

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The stability of stratified rotating flows is investigated by means of laboratory experiments and numerical simulations in axisymmetric cylindrical and annular containers with both horizontal and sloping bottoms. The baroclinic current is initiated via incremental spin-up/down of a linearly stratified fluid by an abrupt change in the rotation rate of the system. Particular attention is given to the non-linear flow regime (finite Rossby numbers). It is found that axisymmetric spin-up current loses its azimuthal symmetry when the Burger number drops below unity, and breaks into a system of large-scale cyclonic and anticyclonic vortices with predominantly vertical axis of rotation. Eddies always develop at the density fronts formed by the corner regions adjacent to the sidewalls of the container. It is shown that the stability of the spin-up flow is largely affected by the bottom slope and the structure of the bottom boundary layer.
机译:通过实验室实验和数值模拟,研究了水平和倾斜底部的轴对称圆柱和环形容器中分层旋转流的稳定性。斜压电流是通过系统旋转速度的突然变化,通过线性分层流体的增量旋转上升/下降而启动的。特别注意非线性流态(有限的Rossby数)。结果发现,当Burger数降至1以下时,轴对称自旋电流会失去其方位对称性,并分解为一个以垂直旋转轴为主的大规模旋风和反旋风涡旋的系统。涡流总是在与容器侧壁相邻的拐角区域形成的密度前沿形成。结果表明,自旋向上流动的稳定性在很大程度上受到底部坡度和底部边界层结构的影响。

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