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The effect of cubic stiffness nonlinearity on the vortex-induced vibration of a circular cylinder at low Reynolds numbers

机译:低雷诺数下立方刚度非线性对圆柱体涡激振动的影响

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The vortex-induced vibration (VIV) of a circular cylinder elastically supported by linear and cubic springs is investigated numerically at low Reynolds numbers. The cylinder has a low mass ratio and zero structural damping. Nine dimensionless cubic stiffness nonlinearity strength values are considered. It is found that within the parameter space examined, the VIV response for the linear and softening springs can be divided into four regimes, namely the initial, upper, lower and desynchronised regimes. When the softening spring nonlinearity gets stronger, there exist a reduction in the peak amplitude and shifts in the initial-upper branch and upper-lower branch transitions to lower Reynolds number ranges. In contrast, as the hardening spring nonlinearity increases, the response envelope moves to a higher Reynolds number range and the profile of the initial and upper branches becomes smoother with the lower branch gradually disappearing. In the hardening spring case, the beating response is observed near the low end of the initial branch up to the high end of the initial branch. The modulations in the vibration amplitude gradually diminish with increasing Reynolds number. The cubic spring results coincide with those of the linear spring when they are presented with the equivalent reduced velocity. Due to the low Reynolds number range considered, the majority of the vortex shedding is in the 2S mode. The wake in the cases with smaller vibration amplitudes exhibits a single-row configuration. Whereas, a double-row vortex street is mainly observed in the upper branch. Disorders in the wake are found to be associated with beating responses which have larger vibration amplitudes.
机译:在低雷诺数下,数值研究了由线性和立方弹簧弹性支撑的圆柱体的涡激振动(VIV)。气缸质量比低,结构阻尼为零。考虑了九个无量纲立方刚度非线性强度值。发现在检查的参数空间内,线性弹簧和软化弹簧的VIV响应可分为四个状态,即初始,上,下和不同步状态。当软化弹簧的非线性变得更强时,峰值振幅会减小,并且初始的上分支和上下分支的过渡会移动到较低的雷诺数范围。相反,随着硬化弹簧非线性度的增加,响应包络线移至更高的雷诺数范围,初始分支和上部分支的轮廓变得更平滑,下部分支逐渐消失。在硬化弹簧的情况下,在初始分支的低端附近直至初始分支的高端观察到了跳动响应。随着雷诺数的增加,振动幅度的调制逐渐减小。立方弹簧的结果与线性弹簧的结果相一致,当它们表现为相等的减小的速度时。由于考虑到的雷诺数范围很低,大多数涡旋脱落处于2S模式。在振动幅度较小的情况下,尾流表现出单行配置。而双行涡街主要在上部分支中观察到。发现尾流中的紊乱与具有较大振动幅度的跳动响应有关。

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