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Vortex-induced vibrations of a freely vibrating cylinder near a plane boundary: experimental investigation and theoretical modelling

机译:在平面边界附近的自由振动圆柱体的涡激振动:实验研究和理论建模

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摘要

This work reports on experiments that were performed with a freely vibrating cylinder exposed to currents and placed near a plane boundary parallel to the cylinder axis. It is observed that the proximity of the boundary affects the vertical response of the cylinder in two ways: (i) for gaps between 0.75 and 2 diameters (D), the amplitude of oscillation is reduced; (ii) for gaps smaller than 0.75D, the cylinder impacts the boundary, resulting in an increase of amplitudes and frequencies of oscillations as the flow is accelerated. The in-line force acting on the cylinder is also examined, and the dependency of its harmonic components on the flow velocity and distance to the boundary is evaluated. Besides the typical amplification of the mean component inside the lock-in region, it is also observed that as the cylinder is placed closer to the boundary, the harmonic component with the frequency of the vertical oscillations increases, while the component with twice that frequency decreases in similar amount.udBased on the experimental observations, an existing wake-oscillator model for vortex-induced vibrations is enhanced in order to account for the effect of the boundary. The proposed model introduces an effective damper that is activated when the cylinder reaches a certain distance from the boundary, and a damper/spring set representing the rigidity of the boundary and the dissipation of energy due to impact.
机译:这项工作报告了在自由振动的圆柱体暴露于电流下并放置在平行于圆柱体轴线的平面边界附近的实验。观察到边界的接近以两种方式影响圆柱体的垂直响应:(i)对于0.75和2直径(D)之间的间隙,振荡幅度减小; (ii)对于小于0.75D的间隙,圆柱体会撞击边界,导致流动的振幅和频率随着流动的加速而增加。还检查了作用在气缸上的轴向力,并评估了其谐波分量对流速和到边界的距离的依赖性。除了锁定区域内部平均分量的典型放大之外,还可以观察到,随着圆柱体靠近边界放置,谐波分量随垂直振荡频率的增加而增加,而频率为两倍的谐波分量的减小 ud基于实验观察,增强了现有的涡激振动的尾波振荡器模型,以解决边界的影响。提出的模型引入了一个有效的阻尼器,该阻尼器在圆柱体到达边界的一定距离时被激活,以及一个阻尼器/弹簧组,该阻尼器/弹簧组代表了边界的刚度以及由于碰撞而耗散的能量。

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