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SUPPRESSION OF THE VORTEX-INDUCED VIBRATION OF A CIRCULAR CYLINDER WITH PERMEABLE MESHES

机译:抑制具有渗透网格的涡旋诱导的圆柱振动

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Experiments have been carried out on models of rigid circular cylinders fitted with three different types of permeable meshes to investigate their effectiveness in the suppression of vortex-induced vibrations (VIV). Measurements of the dynamic response are presented for models with low mass and damping which are free to respond in the cross-flow direction. Reynolds number ranged from 1,000 to 10,000 and reduced velocity was varied between 2 and 13. Also presented are measurements of the wake of static models with Particle Image Velocimetry (PIV) at Reynolds number equal to 4000. Results for two meshes made of ropes and cylindrical tubes are compared with the VIV response of a bare cylinder and that of a known suppressor called the "ventilated trousers" (VT). All three meshes achieved an average 50% reduction of the response when compared with that of the bare cylinder. The sparse mesh configuration presented a similar behaviour to the VT, while the dense mesh produced considerable VIV response for an indefinitely long range of reduced velocity. Visualisation of the flow by PIV around static cylinders revealed that all suppressors disrupt the vortex shedding and increase the formation length when compared to the bare cylinder. The VT mesh, which presented the best suppression, also presented the largest vortex formation length.
机译:在安装有三种不同类型的渗透网格的刚性圆柱体的模型上进行了实验,以研究它们在抑制涡旋诱导的振动(VIV)方面的有效性。为具有低质量和阻尼的模型提供了动态响应的测量,其可自由地在横流方向上响应。雷诺数范围从1,000到10,000且速度降低,在2和13之间变化。还提供了雷诺数等于4000的粒子图像速度(PIV)的静态模型唤醒的测量。结果是由绳索和圆柱制成的两个网格的结果将管与裸筒的VIV响应进行比较,并且称为“通风裤子”(VT)的已知抑制器的VIV响应。与裸缸相比,所有三个网格平均减少了响应的50%。稀疏网格配置向VT呈现了类似的行为,而密集网格产生了可明显的VIV响应,用于无限期的长度的速度。通过PIV围绕静电气缸可视化流动透露,所有抑制器与裸筒相比时,所有抑制器都会破坏涡旋脱落并增加地层长度。 VT网格呈现最佳抑制,也呈现了最大的涡旋形成长度。

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