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Two-degree-of-freedom vortex-induced vibrations of a circular cylinder at Re=3900

机译:Re = 3900时圆柱的两自由度涡激振动

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摘要

The vortex-induced vibrations of an elastically mounted circular cylinder are investigated on the basis of direct numerical simulations. The body is free to move in the in-line and cross-flow directions. The natural frequencies of the oscillator are the same in both directions. The Reynolds number, based on the free stream velocity and cylinder diameter, is set to 3900 and kept constant in all simulations. The behavior of the coupled flow-structure system is analyzed over a wide range of the reduced velocity (inverse of the natural frequency) encompassing the lock-in range, i.e. where body motion and flow unsteadiness are synchronized. The statistics of the structural responses and forces are in agreement with prior experimental results. Large-amplitude vibrations develop in both directions. The in-line and cross-flow oscillations are close to harmonic; they exhibit a frequency ratio of 2 and a variable phase difference across the lock-in range. Distinct trends are noted in the force-displacement phasing mechanisms in the two directions: a phase difference jump associated with a sign change of the effective added mass and a vibration frequency crossing the natural frequency is observed in the cross-flow direction, while no phase difference jump occurs in the in-line direction. Higher harmonic components arise in the force spectra; their contributions become predominant when the cylinder oscillates close to the natural frequency. The force higher harmonics are found to impact the transfer of energy between the flow and the moving body, in particular, by causing the emergence of new harmonics in the energy transfer spectrum.
机译:在直接数值模拟的基础上研究了弹性安装的圆柱体的涡激振动。主体可以自由地沿轴向和横流方向移动。振荡器的固有频率在两个方向上都相同。基于自由流速度和圆柱直径的雷诺数设置为3900,并在所有模拟中保持恒定。在包括锁定范围在内的较宽的降低速度范围内(与固有频率成反比)对耦合流动结构系统的行为进行了分析,即,人体运动和流动不稳定是同步的。结构响应和力的统计与先前的实验结果一致。大振幅振动会在两个方向上产生。串联和错流振荡接近谐波。它们的频率比为2,并且在整个锁定范围内具有可变的相位差。在两个方向上的力-位移定相机制中注意到了明显的趋势:与有效增加质量的符号变化相关的相位差跳跃,以及在错流方向上观察到与自然频率相交的振动频率,而没有相位差异跳跃发生在串联方向上。力谱中会出现更高的谐波分量。当圆柱体振荡接近自然频率时,它们的作用就变得尤为重要。发现高次谐波的力特别是通过引起能量传递谱中新谐波的出现来影响流与移动体之间的能量传递。

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