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Secondary Instabilities of the In-Phase Synchronized Wakes Past Two Circular Cylinders in Side-By-side Arrangement

机译:在两个并排布置中,经过两个圆形圆筒的同相同步唤醒的次要不稳定性

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摘要

In the present study we investigate the secondary instability of the in-phase synchronized vortex shedding from two side-by-side circular cylinders at low Reynolds numbers. Two distinct Floquet modes become unstable for different values of the Reynolds number and of the non-dimensional gap spacing, leading to the onset of the well-known flip-flop instability of the two cylinder wakes. In both cases the two-dimensional Floquet analysis reveals that at very low Reynolds numbers, a pair of complex-conjugate multipliers crosses the unit circle, showing the same frequency as the biased gap-flow flip-over. In the past literature this behaviour has been often ascribed to a bistability of the flow. On the contrary, the present DNS and stability results provide evidence that at low Reynolds numbers, the flip-flopping behaviour originates from a Neimark-Sacker bifurcation of the in-phase shedding cycle.
机译:在本研究中,我们研究了低雷诺数下两个并排的圆柱体内同相同步涡流脱落的次要不稳定性。对于雷诺数和无量纲间隙间距的不同值,两种截然不同的Floquet模式变得不稳定,从而导致众所周知的两个圆柱尾流触发器的不稳定性。在这两种情况下,二维Floquet分析都表明,在非常低的雷诺数下,一对复共轭乘数穿过单位圆,显示出与偏置的间隙流翻转相同的频率。在过去的文献中,这种行为通常归因于流动的双稳态。相反,当前的DNS和稳定性结果提供了证据,即在低雷诺数下,触发器行为源自同相脱落循环的Neimark-Sacker分叉。

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