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Wake structures and vortex-induced vibrations of a long flexible cylinder - Part 2: Drag coefficients and vortex modes

机译:长挠性圆柱的尾迹结构和涡激振动-第2部分:阻力系数和涡模

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Drag coefficients and vortex structures in the wake of a vertical long flexible cylinder vibrating at low mode numbers are presented in this paper. A model with an external diameter of 16 mm and a total length of 1.5 m giving an aspect ratio of about 94 was used to perform more than 100 runs in which Reynolds numbers ranged between 1200 and 12 000. Only the lower 40% of its length was exposed to the water current in the flume and applied top tensions varied from 15 to 110N giving fundamental natural frequencies in the range from 3 to 7.1 Hz. Reduced velocities based on the fundamental natural frequency up to 16 were reached. The mass ratio was 1.8 and the combined mass-damping parameter about 0.05. The largest drag coefficients were found related to the largest x-y synchronised motions. Digital particle image velocimetry was used to investigate the vortex structures in the wake of the cylinder model. Two modes of vortex shedding were observed, depending on the response branch and the position along the length of the model at which the interrogations were performed.
机译:介绍了垂直长形柔性圆柱体在低模数下振动后的阻力系数和涡旋结构。使用外径为16 mm,总长度为1.5 m(长宽比约为94)的模型执行100次以上的运行,其中雷诺数在1200至12000之间。仅其长度的下40%暴露在水槽中的水流中,施加的最高张力从15到110N不等,从而提供了3到7.1 Hz范围内的基本固有频率。基于基本自然频率的降低速度达到了16。质量比为1.8,并且组合的质量阻尼参数为约0.05。发现最大的阻力系数与最大的x-y同步运动有关。使用数字粒子图像测速技术研究了圆柱模型之后的涡旋结构。观察到两种涡旋脱落模式,具体取决于响应分支和沿模型长度进行询问的位置。

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