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An efficient time-domain prediction model for vortex-induced vibration of flexible risers under unsteady flows

机译:非稳态流动下柔性立管涡激振动的时域有效预测模型

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In this study, an efficient time-domain prediction model is developed to predict unsteady flow vortex-induced vibrations (VIV) of flexible risers. The hydrodynamic forces on flexible risers are calculated on the basis of forced oscillation experiments on rigid cylinders. A period identification criterion, based on the spatial and temporal variations of reduced velocity, is proposed to divide the entire vibration process into exciting and damping periods of each exited mode. In exciting periods, assuming that VIV enters an ideal lock-in stage, a non-iterative solving model is established under modal space for response calculations, which efficiently predicts time domain VIV responses. In damping periods, free-decay vibration theory based recurrence formulas are established under modal space, and they get solved stepwise for modal responses. After some slight response adjustments to smooth period transitions, the VIV response time history can be obtained efficiently. This model is validated by steady flow WV prediction cases, and further applied to predict oscillatory flow VIV experimental results. The prediction cases reveal that this model is able to realize high-speed VIV predictions with satisfactory results and no convergence problems. This model, with high efficiency and stability, is highly suitable for unsteady flow VIV prediction in engineering applications.
机译:在这项研究中,开发了一种有效的时域预测模型,以预测柔性立管的非定常流动涡激振动(VIV)。弹性立管上的流体动力是根据刚性圆柱体上的强迫振动实验计算得出的。提出了一种基于降低速度的时空变化的周期识别标准,将整个振动过程分为每个退出模式的激励和阻尼周期。在激动人心的时期,假设VIV进入了理想的锁定阶段,则会在模态空间下建立非迭代求解模型以进行响应计算,从而有效地预测时域VIV响应。在阻尼周期内,在模态空间下建立基于自由衰减振动理论的递推公式,并逐步求解模态响应。经过一些轻微的响应调整以平滑周期过渡后,可以有效地获得VIV响应时间历史记录。该模型通过稳流WV预测案例得到验证,并进一步应用于预测振荡流VIV实验结果。预测实例表明,该模型能够实现高速VIV预测,结果令人满意,并且没有收敛问题。该模型具有高效率和稳定性,非常适合工程应用中的非恒定流VIV预测。

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