首页> 外文期刊>Journal of Marine Science and Engineering >Cross-Flow Vortex-Induced Vibration (VIV) Responses and Hydrodynamic Forces of a Long Flexible and Low Mass Ratio Pipe
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Cross-Flow Vortex-Induced Vibration (VIV) Responses and Hydrodynamic Forces of a Long Flexible and Low Mass Ratio Pipe

机译:长挠性低质量比管道的横流涡激振动(VIV)响应和流体动力

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Laboratory tests were carried out to investigate the cross-flow (CF) dynamic responses and hydrodynamic forces of a flexible pipe that subjected to vortex-induced vibration (VIV). The pipe had a critical mass ratio of 0.54 and an aspect ratio of 181.8. The uniform flow environment was realized by towing the pipe along a towing tank. The towing velocity ranged from 0.1–1.0 m/s with an interval of 0.05 m/s. Two axial pre-tension cases (200 N and 300 N) were enforced. The structural strains were measured at seven positions evenly distributed along the pipe. Then a modal analysis method was applied to reconstruct the displacement responses. It is revealed that the maximum CF displacement amplitude reached up to 2.18 pipe diameter and the strain response exhibited higher harmonic components. The CF dominant frequency gradually rises with the increase of reduced velocity and up to a three-order vibration mode can be observed. In addition, mean drag coefficient, lift force coefficient and added mass coefficient were also calculated to further investigate the fluid force feature of a low mass flexible pipe undergoing VIV.
机译:进行了实验室测试,以研究遭受涡流诱发振动(VIV)的挠性管的横流(CF)动力响应和流体动力。该管的临界质量比为0.54,纵横比为181.8。通过沿拖曳槽拖曳管道可实现均匀的流动环境。牵引速度为0.1-1.0 m / s,间隔为0.05 m / s。实施了两个轴向预紧情况(200 N和300 N)。在沿管道均匀分布的七个位置处测量结构应变。然后采用模态分析方法重建位移响应。结果表明,最大的CF位移幅度达到了2.18的管径,应变响应表现出较高的谐波分量。 CF主频随着速度的减小而逐渐增加,并且可以观察到高达三阶的振动模式。此外,还计算了平均阻力系数,升力系数和附加质量系数,以进一步研究承受VIV的低质量挠性管的流体力特性。

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