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An enhanced stiffness model for elastic lines and its application to the analysis of a moored floating offshore wind turbine

机译:弹性线的增强刚度模型及其在系泊浮式海上风力发电机分析中的应用

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摘要

The performance of a polyester mooring line is non-linear and its elongation plays a significant role in the dynamic response of an offshore moored structure. However, unlike chain, the tension-elongation relationship and the overall behavior of elastic polyester ropes are complex. In this paper, by applying an enhanced stiffness model of the mooring line, the traditional elastic rod theory has been extended to allow for large elongations. One beneficial feature of the present method is that the tangent stiffness matrix is symmetric; in non-linear formulations the tangent stiffness matrix is often non-symmetric. The static problem was solved by Newton-Raphson iteration, whereas a direct integration method was used for the dynamic problem. The computed mooring line tension was validated against the proprietary OrcaFlex software. Results of mooring line top tension predicated by different elongations are compared and discussed. The present method was then used for a simulation of an offshore floating wind turbine moored with taut lines. From a comparison between linear and non-linear formulations, it is seen that a linear spring model under-estimates the mean position when the turbine is operating, but over-estimates the amplitude of the platform response at low frequencies when the turbine has shut down.
机译:聚酯系泊缆的性能是非线性的,其伸长率在海上系泊结构的动力响应中起着重要作用。但是,与链条不同,弹性聚酯绳的拉伸伸长率关系和整体性能很复杂。在本文中,通过应用系泊绳的增强刚度模型,对传统的弹性杆理论进行了扩展以允许较大的伸长率。本方法的一个有益特征是切线刚度矩阵是对称的。在非线性公式中,切线刚度矩阵通常是不对称的。静态问题通过Newton-Raphson迭代解决,而动态问题使用直接积分方法。计算出的系泊缆线张力已通过专有的OrcaFlex软件进行了验证。比较和讨论了由不同伸长率预测的系泊缆顶部张力的结果。然后,将本方法用于模拟系有绷紧线的海上浮动风力涡轮机。从线性公式和非线性公式之间的比较可以看出,线性弹簧模型会低估涡轮机运行时的平均位置,但会高估涡轮机关闭时低频时平台响应的幅度。

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  • 作者

    Lin, Zi; Sayer, P.;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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