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Vortex-induced vibration of flexible pipe fitted with helical strakes in oscillatory flow

机译:振荡流中装有螺旋形波纹的挠性管的涡激振动

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摘要

Helical strakes are widely used to suppress vortex-induced vibration (VIV) in offshore engineering. However, the WV response and suppression efficiency of the straked pipe remain unclear in an oscillatory flow. In this paper, an experimental study of VIV for a flexible pipe fitted with helical strakes was conducted in an oscillatory flow with the Keulegan-Carpenter (KC) number varying from 21 to 165 and maximum reduced velocities ranging from 4 to 12. The effects of the helical strakes on the VIV response, Strouhal number, suppression efficiency and fatigue damage in an oscillatory flow were investigated. The results show that the suppression efficiency and fatigue damage reduction ratio are not as ideal in oscillatory flow as those in steady flow. Moreover, the VIV dominant frequency is obviously magnified and a large Strouhal number is observed, reaching 0.439 under a lower reduced velocity of 4. As the reduced velocity further increases to 6, 8, 12, two branches of Strouhal numbers are clearly seen. The dominant frequency decreases at the first branch with a small KC number and increases at the second branch with a large KC number.
机译:螺旋形波纹被广泛用于抑制海上工程中的涡激振动(VIV)。但是,在振荡流中,行程管的WV响应和抑制效率仍然不清楚。在本文中,在振荡流中对装有螺旋形波纹管的VIV进行了实验研究,Keulegan-Carpenter(KC)数在21到165之间变化,最大降低速度在4到12之间。研究了涡流中螺旋形脉动对VIV响应,斯特劳哈尔数,抑制效率和疲劳损伤的影响。结果表明,振荡流的抑制效率和疲劳损伤降低率不如稳定流理想。此外,VIV主频率明显放大,观察到较大的Strouhal数,在较低的降低速度4下达到0.439。随着降低的速度进一步增加到6、8、12,可以清楚地看到两个Strouhal数分支。主导频率在KC数小的第一个分支处减小,而在KC数大的第二个分支处增大。

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