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Observation of an internal wave attractor in a confined, stably stratified fluid

机译:观察密闭,稳定分层流体中的内波吸引子

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When a container of water is vibrated, its response can be described in terms of large-scale standing waves- the eigen-modes of the system. The belief that enclosed continuous media always possess eigenmodes is deeply rooted. Internal gravity waves in uniformly stratified fluids, however, present a counterexample. Such waves propagate at a fixed angle to the vertical that is determined solely by the forcing frequency, and a sloping side wall of the container will therefore act as a lens, resulting in ray convergence or divergence. An important consequence of this geometric focusing is the prediction that, following multiple reflections, these waves will evolve onto specific paths- or attrac-tors- whose locations are determined only by the frequency. Here we report the results of laboratory experiments that confirm that internal-wave attractors, rather than eigenmodes, determine the response of a confined, stably stratified fluid over a broad range of vibration frequencies. The existence of such attractors could be important for mixing processes in ocean basins and lakes, and may be useful for analysing oscillations of the Earth's liquid core and the stability of spinning, fluid-filled spacecraft.
机译:当水容器振动时,其响应可以用大型驻波(系统的本征模式)来描述。封闭的连续媒体始终具有本征模式的信念已根深蒂固。然而,均匀分层流体中的内部重力波是一个反例。这样的波相对于垂直方向以固定的角度传播,该角度仅由施力频率确定,因此容器的倾斜侧壁将充当​​透镜,从而导致光线会聚或发散。这种几何聚焦的重要结果是预测,在多次反射之后,这些波将演化到特定的路径或吸引子,其位置仅由频率决定。在这里,我们报告了实验室实验的结果,这些结果证实了内波吸引子而非本征模确定了在广泛的振动频率范围内受限,稳定分层的流体的响应。这种吸引子的存在对于海洋盆地和湖泊的混合过程可能很重要,并且对于分析地球液核的振荡以及旋转的充满流体的航天器的稳定性可能很有用。

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