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Transitions to Chaos in the Spherical Couette Flow Due to Periodic Variations in the Rotation Velocity of One of the Boundaries

机译:由于边界之一的旋转速度的周期性变化,在球形库埃特流中过渡为混沌

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The results of an experimental investigation of unsteady viscous incompressible flows in a spherical gap, when the rotation velocity of one sphere varies in accordance with the harmonic law, while that of the other sphere remains constant, are presented. The modulation amplitudes and frequencies are small compared with the mean rotation velocities of the spheres. Transition to chaos is studied in a layer, whose thickness is equal to the inner sphere radius, in the case of counter rotation of the spherical boundaries. A periodic flow generated as a result of the mutual synchronization of the frequencies of a three-frequency regime preceding that under study at lower Reynolds numbers is taken as the original state. It is shown that certain properties of turbulent flows near the threshold of their formation essentially depend on the modulation frequency.
机译:给出了当一个球体的旋转速度根据谐波定律变化而另一个球体的旋转速度保持恒定时,球形间隙中不稳定的不可压缩流动的实验研究结果。与球的平均旋转速度相比,调制幅度和频率较小。在球形边界反向旋转的情况下,在一层厚度等于内部球体半径的层中研究了向混沌的过渡。由于在较低雷诺数下研究之前的三频状态的频率相互同步而产生的周期性流被视为原始状态。结果表明,湍流形成阈值附近的某些性质基本上取决于调制频率。

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