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首页> 外文期刊>Journal of marine science and technology >Vortex-induced vibration (VIV) dynamics of a tensioned flexible cylinder subjected to uniform cross-flow
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Vortex-induced vibration (VIV) dynamics of a tensioned flexible cylinder subjected to uniform cross-flow

机译:承受均匀横流的张紧柔性圆柱体的涡激振动(VIV)动力学

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摘要

This paper presents the experimental results of a study on the effects of axial applied tension on the vibration amplitude, the suppression of vibration, hydrodynamic force coefficients and in-line (IL) and cross-flow (CF) frequency responses during vortex-induced vibration of a horizontally mounted flexible cylinder with a low mass ratio (cylinder's mass/mass of displaced water), low bending-stiffness, and high aspect ratio (length/diameter 200) in the subcritical Reynolds number regime (Re = 1000-16000). The effect of tension is studied by applying four different tensions. It was revealed that higher applied tensions, which reduce the vibration amplitude, could significantly raise the hydrodynamic lift force coefficient. In addition, higher applied tensions generate narrower lock-in bandwidths. After the highest vibration amplitude and during the region of lower vibration amplitudes, within the first lock-in region (in the first mode of vibration), power spectral densities show broad bandwidth, while within other regions and higher modes they appear narrow-banded. The ratio of the dominant IL to CF frequency is approximately equal to 2.0, except for the lower reduced velocities, where the ratio values reach 3.83 for the highest tension accompanied by widening of the region in which this ratio is over 2.0. This ratio is 2.76 for the lowest applied tension with a narrower region.
机译:本文介绍了研究轴向施加张力对振动振幅,振动抑制,流体动力力系数以及涡激振动过程中的线内(IL)和横流(CF)频率响应的影响的实验结果。在亚临界雷诺数法(Re = 1000-16000)下,水平安装的柔性圆柱体的质量比(圆柱体的质量/置换水的质量)低,弯曲刚度低,纵横比高(长度/直径200)。通过施加四种不同的张力来研究张力的影响。结果表明,较高的施加张力会减小振动幅度,从而可以显着提高流体动力升力系数。另外,较高的施加张力会产生较窄的锁定带宽。在最高振幅之后,在较低振幅区域内,在第一锁定区域内(在第一振动模式下),功率谱密度显示出较宽的带宽,而在其他区域和较高模式内,它们呈窄带状。主要IL与CF频率的比率大约等于2.0,除了较低的降低的速度外,在该比率下,最高张力的比率值达到3.83,同时该比率超过2.0的区域变宽。对于具有较窄区域的最低施加张力,该比率为2.76。

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