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首页> 外文期刊>Applied Ocean Research >Bounded and unbounded coupled transverse response of parametrically excited vertical marine risers and tensioned cable, legs for marine applications
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Bounded and unbounded coupled transverse response of parametrically excited vertical marine risers and tensioned cable, legs for marine applications

机译:参量激励的垂直海洋立管和张紧的电缆,支腿的有界和无界耦合横向响应,用于海洋应用

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摘要

The paper deals with the non-linear dynamic response in the transverse direction of vertical marine risers or a tensioned cable legs subjected to parametric excitation at the top of the structure. The dynamic model contains both elastic and bending effects. The analytical approach reveals that the dynamic lateral response is governed by effects originated from the coupling of modes in transverse direction. The mathematical model is being treated numerically by retaining a sufficient number of transverse modes. Numerical results are given for specific case studies and refer both to the time histories of the lateral response for all modes of motion, and to the corresponding power spectral densities obtained through FFT. The numerical predictions are suitably plotted and discussed. The calculations concern both the undamped and the damped dynamic system. The damping in the system is a non-linear Morison type term, which describes the effect of the hydrodynamic drag. Both coupled and uncoupled equations are treated and points as well as regions of coupled and uncoupled stability and instability are defined. It is shown that the impacts originated from the coupling, evaluate new instabilities for the respective undamped system. The numerical results obtained through FFT of the time histories, provide qualitative conclusions for the features of the dynamic response for the modes of motions considered. Special attention has been paid to the effect of the hydrodynamic drag for the parametric excitation frequencies that guide the dynamic system to lie within a region of coupled instability.
机译:本文研究了垂直海事立管或结构顶部受参数激励的张紧的电缆腿在横向上的非线性动力响应。动态模型包含弹性和弯曲效果。分析方法表明,动态横向响应受横向模式耦合产生的影响支配。通过保留足够数量的横向模式,对数学模型进行了数值处理。给出了针对特定案例研究的数值结果,并涉及所有运动模式的横向响应的时间历史以及通过FFT获得的相应功率谱密度。适当地绘制和讨论了数值预测。计算涉及无阻尼和阻尼动力系统。系统中的阻尼是非线性Morison类型的术语,它描述了流体动力阻力的影响。耦合方程和解耦合方程都被处理,并且定义了耦合点和解耦合点的稳定性以及不稳定性点和区域。结果表明,这些影响源于耦合,评估了各个未阻尼系统的新不稳定性。通过时间历史的FFT获得的数值结果为所考虑的运动模式的动态响应特征提供了定性结论。已经特别注意了流体动力阻力对于参数激励频率的影响,该参数激励频率指导动态系统位于耦合不稳定区域内。

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