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首页> 外文期刊>Dynamics of Atmospheres and Oceans >Small-scale instabilities of an island wake flow in a rotating shallow-water layer
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Small-scale instabilities of an island wake flow in a rotating shallow-water layer

机译:旋转浅水层中岛尾流的小规模不稳定性

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摘要

Unlike the standard two-dimensional Karman street, the oceanic vortex streets which may occur behind isolated islands are affected by the earth's rotation and the vertical stratification of the thermo-cline. These effects induce a selective destabilisation of anticyclonic vorticity regions. Several experimental studies were devoted to the inertial instability, which induces transient and three-dimensional perturbations in a rotating fluid layer. However, these previous experiments correspond to a large or finite vertical h to horizontal L aspect ratio (α = h/L) while in an oceanic context this ratio is much smaller than unity (α approx=0.01). This vertical confinement induces a cutoff vertical scale for unstable perturbations. But, since dissipation preferentially damps smaller scales, the shallow-water aspect ratio α may become so small that no growth will occur. We present here the first experimental investigation of three-dimensional destabilizations of an island wake flow in a shallow-water configuration. These laboratory experiments where performed on the LEGI Coriolis Platform, with small aspect ratio (α= 0.1) and large Reynolds numbers (Re = 5000-35, 000). We have shown that unstable three-dimensional perturbations occur when the island Rossby number Ro = V/(Ω_0D) is large enough (Ro > 0.8) while the Reynolds number seems to control the duration of this transient instability. Qualitative dye visualisation reveals various types of passive tracer dispersion in the wake. Moreover, according to PIV measurements we have shown that, unlike experiments having large or finite aspect ratio (α≥1), the small-scale perturbations do not significantly reduce the local vorticity inside the unstable anticyclone. Hence, the shallow-water configuration (α1) seems to reduce the intensity and the impact of three-dimensional instabilities in the vortex street. Finally, for high Froude numbers, when the flow becomes supercritical and owing to the generation of large amplitude waves in the wake, the vortex street intensity is strongly reduced.
机译:与标准的二维Karman街不同,可能在孤立的岛屿后面出现的海洋涡街受到地球自转和热跃层垂直分层的影响。这些作用引起抗气旋涡度区的选择性失稳。几项实验研究致力于惯性不稳定性,它在旋转的流体层中引起瞬态和三维扰动。但是,这些先前的实验对应于较大的或有限的垂直h与水平L纵横比(α= h / L),而在海洋环境中,该比例远小于1(α大约= 0.01)。这种垂直限制引起了不稳定扰动的截止垂直尺度。但是,由于耗散会优先抑制较小的比例,因此浅水纵横比α可能会变得很小,以至于不会出现增长。我们在这里介绍了在浅水配置中岛尾流的三维失稳的第一项实验研究。这些实验室实验是在LEGI Coriolis平台上进行的,长宽比(α= 0.1)小,雷诺数大(Re = 5000-35,000)。我们已经表明,当岛的罗斯比数Ro = V /(Ω_0D)足够大(Ro> 0.8)而雷诺数似乎控制该瞬态不稳定性的持续时间时,就会发生不稳定的三维扰动。定性染料可视化揭示了尾迹中各种类型的被动示踪剂分散。而且,根据PIV测量,我们已经表明,与具有大的或有限的纵横比(α≥1)的实验不同,小规模的扰动不会显着降低不稳定的反气旋内部的局部涡度。因此,浅水构造(α 1)似乎减少了涡街的强度和三维不稳定性的影响。最后,对于高弗洛德数,当流动变得超临界并且由于在尾流中产生大振幅波时,涡街强度会大大降低。

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