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Asymmetries in vertical vorticity and vertical velocity arising during nonlinear homogeneous spindown

机译:非线性均匀降落过程中产生的垂直涡度和垂直速度的不对称性

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During the spindown of a unidirectional, geostrophic current in a homogeneous fluid, asymmetry arises in the vertical velocity and vertical relative vorticity fields. A closed-form, time-dependent solution valid to order Rossby number is derived to explore these asymmetries. Momentum advection in the interior and the Ekman layer leads to competing tendencies in the vertical vorticity's evolution. In the interior, momentum advection hastens spindown in cyclonic regions. In the Ekman layer, momentum advection weakens Ekman pumping over Ekman suction and thus tends to slow the spindown of cyclonic vorticity. It is shown that the former effect dominates, and hence cyclonic vorticity decays faster than anticyclonic vorticity.
机译:在均质流体中单向地转流下降时,在垂直速度和垂直相对涡度场中会出现不对称现象。推导了一种有效的对Rossby数进行排序的封闭式,与时间有关的解决方案,以探索这些不对称性。内部和Ekman层的动量平流导致垂直涡度演变中的竞争趋势。在内部,动量平流加速了气旋区域的旋转。在埃克曼层中,动量对流减弱了埃克曼在埃克曼吸力作用下的泵送作用,因此趋于减缓旋风涡旋的降速。结果表明,前者起主导作用,因此,旋风涡旋的衰减速度快于反旋涡旋涡的衰减速度。

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