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首页> 外文期刊>Journal of Fluids and Structures >Interference effect of an upstream larger cylinder on the lock-in vibration of a flexibly mounted circular cylinder
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Interference effect of an upstream larger cylinder on the lock-in vibration of a flexibly mounted circular cylinder

机译:上游较大圆柱体对柔性安装圆柱体的锁定振动的干扰作用

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Experiments have been carried out to investigate the flow-induced vibration response of a flexibly mounted circular cylinder located in the vicinity of a larger cylinder and subjected to cross-flow. The interfering larger cylinder was placed upstream and had a diameter twice that of the vibrating cylinder. Complex interaction was observed between the flow over the two cylinders. The vibration responses of the flexible cylinder were classified into different regimes according to the relative positions of the two cylinders. In the-side-by-side arrangement and the tandem or near-tandem arrangement, flow-induced vibrations of the flexible cylinder were greatly suppressed. In the staggered arrangement which covered a large portion of the relative cylinder positions being investigated, vibrations of the smaller cylinder were greatly amplified. The vibration response curves were also largely modified with a broadening of the lock-in resonance range. A shift of the peak reduced velocity for maximum vibration response was also found. Flow visualizations and wake velocity measurements suggested that the modifications of the vibration responses were related to the presence or absence of constant or intermittent flow through the gap region between the two cylinders. The proposed mechanisms of flow interactions and the resulting vibration response characteristics could explain previous observations on flow-induced vibrations of two equal-sized circular cylinders reported in the literature.
机译:已经进行了实验,以研究位于较大圆柱体附近并受到横流作用的柔性安装圆柱体的流动引起的振动响应。较大的干扰圆柱体位于上游,其直径是振动圆柱体直径的两倍。在两个气缸上的流动之间观察到复杂的相互作用。根据两个圆柱体的相对位置,将柔性圆柱体的振动响应分为不同的状态。在并排布置和串联或接近串联布置中,柔性缸的流动引起的振动被大大抑制。在覆盖大部分被研究的相对气缸位置的交错布置中,较小气缸的振动被大大放大。振动响应曲线也随着锁定共振范围的扩大而大大修改。还发现峰值减小的速度发生了变化,以实现最大的振动响应。流动可视化和尾流速度测量表明,振动响应的修改与是否存在通过两个圆柱体之间的间隙区域的恒定或间歇流动有关。所提出的流动相互作用机理和由此产生的振动响应特性可以解释文献中报道的关于两个等大小圆柱体的流动诱发振动的先前观察结果。

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