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Cyclone and anticyclone formation in a rotating stratified fluid over a sloping bottom

机译:倾斜底部上方旋转的分层流体中的旋风分离器和反旋风分离器的形成

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We discuss laboratory experiments with a continuous source or sink of fluid in a two-layer rotating environment which produces anticyclonic and cyclonic vortices, respectively. Experiments were carried out with a sloping bottom in order to simulate the β-effect and they were conducted for different values for the source/sink flow rate Q and the Coriolis parameter f. The Rossby number Ro of these vortices was small but finite and the flow was expected to be quasi-geostrophic. The qualitative behaviour of the anticyclonic and cyclonic vortices was generally similar, but it depended on the flow rate. For low flow rates, a single vortex formed at the source and extended to the west. At higher flow rates, the vortex broke free from the source and moved to the west; this vortex was then followed sequentially by other vortices behaving similarly. The westward velocity U of these vortices was calculated and compared with the speed U_s of a linear topographic Rossby wave. For multiple vortices the westward velocities were greater than Us while for a single vortex produced by a low flow rate the velocity was less than U_s. Significant asymmetry between the anticyclonic and cyclonic vortices was observed in the transition zone from single to multiple vortices which implies that ageostrophic effects were still present in the flow.
机译:我们讨论了在两层旋转环境中使用连续的液体源或汇的实验室实验,该环境分别产生反气旋和旋风涡旋。为了模拟β效应,在倾斜的底部进行了实验,并针对源/汇流量Q和科里奥利参数f的不同值进行了实验。这些涡旋的Rossby数Ro很小但很有限,预计流动是准地转的。反气旋涡和旋风涡的定性行为大致相似,但取决于流速。对于低流速,单个涡流在源头形成并向西延伸。在较高的流速下,涡旋从源头脱离并移至西方。然后,在该涡旋之后依次跟随其他行为类似的涡旋。计算出这些涡旋的向西速度U,并将其与线性地形Rossby波的速度U_s进行比较。对于多个涡旋,向西的速度大于Us,而对于低流速产生的单个涡旋,其速度小于U_s。在从单涡旋到多涡旋的过渡带中,观察到了反气旋涡和旋风涡之间的明显不对称性,这表明流中仍存在老化现象。

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