首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Study on Vortex-Induced Vibration of Deep-Water Marine Drilling Risers in Linearly Sheared Flows in consideration of Changing Added Mass
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Study on Vortex-Induced Vibration of Deep-Water Marine Drilling Risers in Linearly Sheared Flows in consideration of Changing Added Mass

机译:考虑到更换块状的线性剪切流动涡流型水钻提升器涡流振动研究

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In order to more accurately predict the coupled in-line and cross-flow vortex-induced vibration (VIV) response of deep-water marine drilling risers in linearly sheared flows, an improved three-dimensional time-domain coupled model based on van der Pol wake oscillator models was established in this paper. The impact of the in-line and cross-flow changing added mass coefficients was taken into account in the model. The finite element, Newmark-β, and Newton–Raphson methods were adopted to solve the coupled nonlinear partial differential equations. The entire numerical solution process was realized by a self-developed program based on MATLAB. Comparisons between the numerical calculations and the published experimental tests showed that the improved model can more accurately predict some main features of the coupled in-line and cross-flow VIV of long slender flexible risers in linearly sheared flows to some extent. The coupled in-line and cross-flow VIV of a real-size marine drilling riser, usually used in the deep-water oil/gas industry in the South China Sea, was analyzed. The influence of top tension force and seawater flow speed, as well as platform heave amplitude and frequency, on the riser in-line and cross-flow VIV was also discussed. The results show that the platform heave motion increases the VIV displacements and changes the magnitudes of peak frequencies as well as the components of frequencies. The platform heave motion also has a significant influence on the vibration modes of the middle and upper sections of the riser. The impact level of each factor on the in-line and cross-flow VIV response of the riser is different. The improved model and the results of this paper can be used as a reference for the engineering design of deep-water marine drilling risers.
机译:为了更准确地预测线性剪切流中深水船钻提升管的耦合的在线和横流涡流振动(VIV)响应,基于van der Pol的改进的三维时间域耦合模型唤醒振荡器模型是在本文中建立的。在模型中考虑了在线和交叉流量变化的额外系数的影响。采用有限元,Newmark-β和牛顿-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。数值计算和公布的实验测试之间的比较表明,改进的模型可以更准确地预测长细长柔性立管的耦合在线和交叉流动Viv的一些主要特征在一定程度上线性剪切流。分析了南海深水油/天然气工业中的实尺寸海洋钻孔提升管的耦合的型号和交叉流动VIV。还讨论了顶部张力和海水流速的影响以及平台升振幅度和频率,在直线和跨流程VIV上。结果表明,平台升降运动增加了VIV位移,并改变了峰值频率的大小以及频率的组件。平台升降运动也对提升机的中间部分和上部的振动模式产生了显着影响。提升机的串行和交叉流动VIV反应的每个因素的冲击水平不同。改进的模型和本文的结果可作为深水海洋钻井立管工程设计的参考。

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