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Initiation of turbulence and chaos in non-equilibrium inhomogeneous media: wave beams

机译:非平衡非均匀介质中湍流和混沌的产生:波束

摘要

We show that wave excitation and propagation in an inhomogeneous medium lead to the simultaneous appearance of a huge number of waves with different phase velocities. This phenomenon arises in any medium with inhomogeneous parameters, e. g., in fluid jets where the inhomogeneity appears as a result of the boundary layer. Because of fluctuations (however small) the waves become randomized, i.e. turbulence develops. We demonstrate that the eigenvalues depend essentially on the frequency of the perturbation and on the distance from the initial section of a jet or wave beam. We show how to find the continuous set of eigenvalues-complex wavenumbers-and corresponding eigenfunctions for any given frequency. The implication of these results is that the transition to turbulence occurs, not through the excitation of a gradually increasing number of waves, as commonly supposed, but by the simultaneous excitation of a continuous wave spectrum.
机译:我们表明,在非均匀介质中的波激发和传播会导致同时出现大量具有不同相速度的波。这种现象出现在任何参数不均匀的介质中,例如。例如,在由于边界层而出现不均匀性的流体射流中。由于波动(但是很小),波变得随机化,即产生了湍流。我们证明了特征值基本上取决于扰动的频率以及与射流或波束的初始截面的距离。我们展示了如何找到任意给定频率的连续特征值集-复波数-以及相应的特征函数。这些结果的含义是,向湍流的过渡不是通过像通常认为的那样通过逐渐增加数量的波的激发而发生,而是通过连续波谱的同时激发而发生的。

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