首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Computational study on aerodynamic mitigation of wind-induced, large-amplitude vibrations of stay cables with strakes
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Computational study on aerodynamic mitigation of wind-induced, large-amplitude vibrations of stay cables with strakes

机译:带有风道的斜拉索风致大振幅振动的空气动力学减振计算研究

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摘要

Modifications of circular cylinder surfaces, such as strakes and helical wires, effectively mitigate Kármán vortex-induced vibrations normal to flow and have been applied to the reduction of large-amplitude vibrations of stay cables in bridges, which occur under wind oblique to a cable with or without rainfall. This aerodynamic control method cannot be fully effective without understanding the behavior of the flow around and the associated forces on oblique cables. To address this issue, flow around a yawed cylinder with various strake patterns was studied using three-dimensional detached eddy simulation (DES) at Reynolds number of 1.4×105. Results demonstrated that strake patterns strongly influence the development of flow structures around a yawed cylinder and therefore the associated forces on the cylinder. The results suggest that particular strake patterns can mitigate large-amplitude and low-frequency vibrations of stay cables induced by oblique wind.
机译:修改圆柱面的表面(例如,薄片和螺旋线)可以有效地缓解由Kármán涡流引起的垂直于流动的振动,并且已应用于减少桥梁中斜拉索的大振幅振动,这种情况在斜向风作用下会发生。或没有降雨。如果不了解绕流的行为以及斜缆上的相关作用力,这种空气动力学控制方法将无法完全有效。为了解决这个问题,使用三维分离涡模拟(DES)在雷诺数为1.4×105的情况下研究了具有不同冲程模式的偏航圆柱体周围的流动。结果表明,走向模式强烈地影响了偏航圆柱体周围流动结构的发展,并因此影响了圆柱体上的相关力。结果表明,特定的波状形态可以减轻斜风引起的斜拉索的大振幅和低频振动。

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