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An experimental investigation on elliptical instability of a strongly asymmetric vortex pair in a stable density stratification

机译:稳定密度分层中强不对称涡旋对椭圆不稳定性的实验研究

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We investigate the elliptical instability of a strongly asymmetric vortex pair in a stratified fluid, generated by the acceleration and deceleration of the rotation of a single flap. The dominant parameter is the Froude number, Fr = U/(NR), based on the maximum azimuthal velocity, U, and corresponding radius, R, of the strongest vortex, i.e. the principal vortex, and buoyancy frequency N. For Fr > 1, both vortices are elliptically unstable while the instability is suppressed for Fr < 1. In an asymmetric vortex pair, the principal vortex is less - and the secondary vortex more - elliptical than the vortices in an equivalent symmetric dipolar vortex. The far more unstable secondary vortex interacts with the principal vortex and increases the strain on the latter, thus increasing its ellipticity and its instability growth rate. The nonlinear interactions render the elliptical instability more relevant. An asymmetric dipole can be more unstable than an equivalent symmetric dipole. Further, the wavelength of the instability is shown to be a function of the Fronde number for strong stratifications corresponding to small Froude numbers, whereas it remains constant in the limit of a homogenous fluid.
机译:我们研究了由单个襟翼的旋转的加速和减速产生的分层流体中强不对称涡流对的椭圆不稳定性。主要参数是弗洛德数Fr = U /(NR),基于最大方位角速度U和最强旋涡(即主旋涡)和浮力频率N的相应半径R。对于Fr> 1 ,当Fr <1时,两个涡旋都是椭圆形的,而不稳定则受到抑制。在非对称涡旋对中,与等效对称偶极涡旋中的涡旋相比,主涡旋的椭圆度较小,而次级涡旋的椭圆度更高。不稳定得多的次级涡旋与主涡旋相互作用并增加了主旋涡的应变,从而增加了其椭圆率和不稳定性增长率。非线性相互作用使椭圆形不稳定性更加相关。非对称偶极子可能比等效对称偶极子更加不稳定。此外,对于对应于小弗洛德数的强分层,不稳定的波长显示为弗洛德数的函数,而在均匀流体的范围内它保持恒定。

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