柔性隔水管在均匀流和剪切流中不同展弦比涡激振动的数值模拟

IF 3.4 3区 工程技术 Q1 MECHANICS 水动力学研究与进展:英文版 Pub Date : 2017-12-01 DOI:10.1016/S1001-6058(16)60815-6
Yu Duanmu (端木玉) , Lu Zou (邹璐) , De-cheng Wan (万德成)
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引用次数: 26

摘要

本文对具有不同长径比的柔性长立管在均匀流和剪切流条件下的涡激振动进行了数值模拟。模拟了三种纵横比:500、750和1 000。仿真采用作者自行开发的计算流体动力学求解器viv-FOAM-SJTU进行,该计算流体动力学求解器与条带法相结合,并在OpenFOAM平台上开发。此外,将径向基函数(RBF)动态网格技术应用于VIV - foam - sjtu求解器中,模拟了高展弦比柔性立管直列(IL)和横流(CF)方向的VIV。完成了基准案例的验证。在相同的参数下,展弦比对柔性长立管的涡激振动有显著影响。长径比的增大对立管的IL平衡位置有较大的影响,而对立管曲率的影响不大。当纵横比从500增加到1 000时,最大IL平均位移从3倍直径增加到8倍直径。另一方面,随着长径比的增大,隔水管的振动模态也会增加。当长径比为500时,CF振动表现为三阶单模态驻波。当纵横比为1 000时,第5和第6模态权重较高,为主导模态。当展弦比较大时,流型对振型的影响越来越明显,在剪切流动中,立管的主导振型往往高于均匀流动。当长径比为750时,均匀流动和剪切流动的CF振荡均表现为4、5模态的多模态振动。均匀流的主导模态为4阶,剪切流的主导模态为5阶。
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Numerical simulations of vortex-induced vibrations of a flexible riser with different aspect ratiosin uniform and shear currents

This paper aimed at describing numerical simulations of vortex-induced vibrations (VIVs) of a long flexible riser with different length-to-diameter ratio (aspect ratio) in uniform and shear currents. Three aspect ratios were simulated: 500, 750 and 1 000. The simulation was carried out by the in-house computational fluid dynamics (CFD) solver viv-FOAM-SJTU developed by the authors, which was coupled with the strip method and developed on the OpenFOAM platform. Moreover, the radial basis function (RBF) dynamic grid technique is applied to the viv-FOAM-SJTU solver to simulate the VIV in both in-line (IL) and cross-flow (CF) directions of flexible riser with high aspect ratio. The validation of the benchmark case has been completed. With the same parameters, the aspect ratio shows a significant influence on VIV of a long flexible riser. The increase of aspect ratio exerted a strong effect on the IL equilibrium position of the riser while producing little effect on the curvature of riser. With the aspect ratio rose from 500 to 1 000, the maximum IL mean displacement increased from 3 times the diameter to 8 times the diameter. On the other hand, the vibration mode of the riser would increase with the increase of aspect ratio. When the aspect ratio was 500, the CF vibration was shown as a standing wave with a 3rd order single mode. When the aspect ratio was 1 000, the modal weights of the 5th and 6th modes are high, serving as the dominant modes. The effect of the flow profile on the oscillating mode becomes more and more apparent when the aspect ratio is high, and the dominant mode of riser in shear flow is usually higher than that in uniform flow. When the aspect ratio was 750, the CF oscillations in both uniform flow and shear flow showed multi-mode vibration of the 4th and 5th mode. While, the dominant mode in uniform flow is the 4th order, and the dominant mode in shear flow is the 5th order.

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1240
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