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Suppression of the vortex-induced vibration of a circular cylinder surrounded by eight rotating wake-control cylinders

机译:抑制涡旋振动的圆柱围绕八个旋转唤醒缸包围的振动

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The present work investigates the use of a polar array of 8 wake-control cylinders as a means of suppressing the vortex-induced vibration (VIV) of a larger circular cylinder. The diameter of the control cylinders and their rotation speed were the main parameters investigated. Experiments have been performed in water at Reynolds numbers between 5000 and 50,000. The rotating cylinders suppressed the peak amplitude of displacement by around 70% when compared to that of a bare cylinder. A similar response was obtained even if the rotation speed of the control cylinders was kept constant in relation to the flow speed. A specific configuration with 8 non-rotating control cylinders achieved an even better 99% suppression. As a consequence of reduced vibrations, the fluctuation of lift and mean drag were not as amplified due to VIV. The results pave the way for further studies concerning system optimization and support the development of efficient VIV suppressors and dynamic positioning systems for large floating offshore platforms and other applications. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本工作调查了使用8个唤醒汽缸的极性​​阵列作为抑制较大圆柱的涡旋诱导的振动(VIV)的方法。控制汽缸的直径及其旋转速度是研究的主要参数。在5000至50,000之间的雷诺数的水中已经在水中进行了实验。与裸缸相比,旋转汽缸抑制了峰值幅度约为70%。即使控制汽缸的转速与流速相比保持恒定,也获得了类似的响应。具有8个非旋转控制汽缸的特定配置实现了更好的99%抑制。由于振动降低,升力的波动和平均阻力由于VIV而不是放大。结果为进一步研究有关系统优化以及支持大型浮动海上平台等应用的高效VIV抑制器和动态定位系统的进一步研究铺平了道路。 (c)2017 Elsevier Ltd.保留所有权利。

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