捎带式管道涡流引发振动的实验研究

Fluids Pub Date : 2024-02-01 DOI:10.3390/fluids9020039
Difei Xiao, Zhiyong Hao, T. Zhou, Hongjun Zhu
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引用次数: 0

摘要

不同直径的近海管道经常以 "捎带 "方式紧密相连。在外部水流的作用下,管道可能会发生振动。振动振幅的可靠预测对于这些结构的设计和运行非常重要。在本研究中,我们在风洞中实验研究了背负式管道的位置角(α)和间隙比(G/D)对 1DOF 涡流诱导振动(VIV)振幅的影响。两个圆筒的直径比 d/D 为 0.5。测试了五个位置角,即 α = 0°、45°、90°、135° 和 180°,以及每个角度的六个间隙比,即 G/D = 0、0.1、0.2、0.3、0.4 和 0.5。结果发现,α 和 G/D 都对振动幅度有显著影响。在所有间隙比中,振动振幅从 α = 0° 增大到 α = 90°,然后减小到 α = 135° 附近的最小值。当 G/D = 0 时,最大振幅出现在 α = 90° 附近;当 G/D = 0.2-0.3 时,最小振幅出现在 α = 135° 附近。在其他位置角,振幅对 G/D 的敏感度较低,尤其是当 G/D 在 0.1 和 0.4 之间时。这些结果验证了使用数值方法获得的结果,对工程师设计海上回输管道非常有价值。
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Experimental Studies on Vortex-Induced Vibration of a Piggyback Pipeline
Offshore pipelines of different diameters are often seen in piggyback arrangements in close proximity. Under the effects of external flows, the pipelines may experience vibration. Reliable prediction of the vibration amplitudes is important for the design and operation of these structures. In the present study, the effect of the position angle (α) and gap ratio (G/D) of a piggyback pipeline on the amplitude of 1DOF vortex-induced vibration (VIV) was investigated experimentally in a wind tunnel. The diameter ratio d/D of the two cylinders was 0.5. Five position angles, namely, α = 0°, 45°, 90°, 135°, and 180°, and six gap ratios at each angle, G/D = 0, 0.1, 0.2, 0.3, 0.4, 0.5, were tested. It was found that both α and G/D affected the amplitude of vibrations significantly. For all gap ratios, the amplitude of vibrations increased from α = 0° to α = 90° and then decreased to a minimum value around α = 135°. The maximum amplitude occurred around α = 90° when G/D = 0, and the minimum occurred around α = 135°, when G/D = 0.2–0.3. At other position angles, the vibration amplitude was less sensitive to G/D, especially when the latter was between 0.1 and 0.4. These results verified those obtained using numerical methods and are invaluable to engineers when designing offshore piggyback pipelines.
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