论文标题
由轴对称惯性波吸引子产生的涡流簇
Vortex cluster arising from an axisymmetric inertial wave attractor
论文作者
论文摘要
我们提出了一项实验研究,该研究对轴对称几何环境中惯性波吸引子的饱和非线性动力学。实验是在旋转的环形流体结构域中通过两个垂直同轴缸,圆锥形底部和水平可变形的上盖作为波发生器划定的:流体流体体积的子午横截面是梯形,而水平横截面为环。首先,将流体设置为刚体旋转。此后,强迫通过轴对称的低振幅体积持续振荡运动引入系统。在大约10个强迫周期的短暂瞬态之后,建立了一个准线性状态,并具有轴对称惯性波吸引子。吸引子容易发生不稳定:在长期尺度(订单100强迫周期)上,完全非线性政权是由于能量级联反向能量的能量朝向缓慢的二维流形的导致轴向旋转的常规多边形系统所代表的,该系统由轴向旋转的旋风涡流围绕内部圆锥形慢慢进行。我们表明,这种缓慢的二维流形体现了持续的慢速前体运动,并且通过垂直涡度的概率密度函数的时间进化来量化了强的旋风 - 抗气旋不对称。
We present an experimental study of the saturated non-linear dynamics of an inertial wave attractor in an axisymmetric geometrical setting. The experiments are carried out in a rotating ring-shaped fluid domain delimited by two vertical coaxial cylinders, a conical bottom, and a horizontal deformable upper lid as wave generator: the meridional cross-section of the fluid volume is a trapezium, while the horizontal cross-section is a ring. First, the fluid is set into a rigid-body rotation. Thereafter, forcing is introduced into the system via axisymmetric low-amplitude volume-conserving oscillatory motion of the upper lid. After a short transient of about 10 forcing periods, a quasi-linear regime is established, with an axisymmetric inertial wave attractor. The attractor is prone to instability: at long time-scale (order 100 forcing periods) a saturated fully non-linear regime develops as a consequence of an energy cascade draining energy towards a slow two-dimensional manifold represented by a regular polygonal system of axially-oriented cyclonic vortices that are slowly precessing around the inner cylinder. We show that this slow two-dimensional manifold manifests a persistent slow prograde motion and a strong cyclonic-anticyclonic asymmetry quantified by the time-evolution of the probability density function of the vertical vorticity.