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Numerical investigation of vortex shedding and vortex-induced vibration for flexible riser models

机译:柔性立管模型的涡旋脱落和涡激振动的数值研究

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ABSTRACT The numerical study about the vortex-induced vibration and vortex shedding in the wake has been presented. Prior to the numerical simulation of flexible riser systems concerning engineering conditions, efficiency validating of the proposed FSI solution method have been performed. The comparison between numerical simulation and published experimental data shows that the CFD method designed for FSI solution could give acceptable result for the VIV prediction of flexible riser/pipe system. As meaningful study on VIV and vortex shedding mode with the focus on flexible riser model systems, two kinds of typical simulation cases have been carried out. One was related to the simulation of vortex visualization in the wake for a riser model subject to forced oscillation, and another was related to the simulation of fluid-structure interaction between the pipes of coupled multi-assembled riser system. The result from forced oscillation simulation shows that the vortex-induced vibration with high response frequency but small instantaneous vibration amplitude contributes to vortex conformation as much as the forced oscillation with large normalized amplitude does, when the frequency of forced oscillation was relatively high. In the multi-assembled riser systems, it has been found that the external current velocity and the distance between two pipes are the critical factors to determine the vibration state and the steady vibration state emerging in quad-pipe system may be destroyed more easily than dual-pipe system.
机译:摘要提出了关于尾流中涡流引起的振动和涡流脱落的数值研究。在对涉及工程条件的柔性立管系统进行数值模拟之前,已对所提出的FSI解决方法进行了效率验证。数值模拟与已发布的实验数据的比较表明,为FSI解决方案设计的CFD方法可以为柔性立管/管道系统的VIV预测提供可接受的结果。作为以可变立管模型系统为重点的有意义的VIV和涡旋脱落模式研究,已经进行了两种典型的仿真案例。一类涉及受强迫振荡的立管模型的尾流中涡流可视化的仿真,另一类涉及耦合多组装立管系统的管道之间的流体-结构相互作用的仿真。强迫振荡模拟的结果表明,当强迫振荡的频率相对较高时,具有较高响应频率但瞬时振动幅度较小的涡旋振动对涡旋构象的贡献与具有较大归一化振幅的强迫振动一样多。在多组件立管系统中,已经发现外部电流速度和两根管之间的距离是确定振动状态的关键因素,四管系统中出现的稳态振动状态比双管中更容易破坏。 -管道系统。

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