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首页> 外文期刊>Polish maritime research >Prediction of Vortex-Induced Vibration Response of Deep Sea Top-Tensioned Riser in Sheared Flow Considering Parametric Excitations
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Prediction of Vortex-Induced Vibration Response of Deep Sea Top-Tensioned Riser in Sheared Flow Considering Parametric Excitations

机译:考虑参数激励的剪切流动中深海顶层立管的涡旋振动响应预测

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It is widely accepted that vortex-induced vibration (VIV) is a major concern in the design of deep sea top-tensioned risers, especially when the riser is subjected to axial parametric excitations. An improved time domain prediction model was proposed in this paper. The prediction model was based on classical van der Pol wake oscillator models, and the impacts of the riser in-line vibration and vessel heave motion were considered. The finite element, Newmark-?2 and Newtona??Raphson methods were adopted to solve the coupled nonlinear partial differential equations. The entire numerical solution process was realised by a self-developed program based on MATLAB. Comparisons between the numerical calculation and the published experimental test were conducted in this paper. The in-line and cross-flow VIV responses of a real size top-tensioned riser in linear sheared flow were analysed. The effects of the vessel heave amplitude and frequency on the riser VIV were also studied. The results show that the vibration displacements of the riser are larger than the case without vessel heave motion. The vibration modes and frequencies of the riser are also changed due to the vessel heave motion
机译:众所周度地接受了涡旋诱导的振动(VIV)是深海顶层张紧立管设计中的主要关注点,特别是当提升管受到轴向参数激发时。本文提出了一种改进的时域预测模型。预测模型基于古典范德波唤醒振荡器模型,考虑了立管在线振动和船舶升降运动的影响。采用有限元,纽马克 - 2和纽托纳?? Raphson方法来解决耦合的非线性偏微分方程。通过基于MATLAB的自我开发的程序实现了整个数值解决方案过程。本文进行了数值计算与公开的实验试验之间的比较。分析了在线性剪切流程中真实尺寸的顶张力提升机的在线和交叉流动VIV响应。还研究了血管升振幅度和频率对提升管VIV的影响。结果表明,提升管的振动位移大于没有船舶升降运动的情况。由于船舶升降运动,提升管的振动模式和频率也改变

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