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Assessment of the Dynamic Responses and Allowable Sea States for a Novel Offshore Wind Turbine Tower and Rotor Nacelle Assembly Installation Concept Based on the Inverted Pendulum Principle

机译:基于倒立摆原理评估新型海上风力发电机塔架和转子机舱总成安装概念的动态响应和允许海况

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摘要

This paper presents a numerical study for preliminary assessment of the dynamic responses and allowable sea states for the installation of an offshore wind turbine (OWT) tower and rotor nacelle assembly (RNA) based on a novel method. This method is based on the inverted pendulum principle and consists of various sequential activities for which the allowable limits of sea states need to be established. For critical installation activities, numerical analyses methodologies have been applied to model the actual operations. For the parameters limiting the execution of the operations, response statistics are provided. It is found that at least 45 seeds are required to achieve convergence of snap force statistics during the OWT lift-off. The response statistics are used to calculate a characteristic value corresponding to a target probability of non-exceedance. For the lift-off and mating operations, these characteristic values are compared with the allowable limits of the response parameters to establish the allowable limits of sea states. In addition, sensitivity study on key modeling parameters are conducted. Spring coefficients of contact elements and hinged connections, winch speed, and hoist wire stiffness are shown to be important modeling parameters. The results provided in this paper are important for future finite element modeling (FEM) and cost-effective design of the structural components.
机译:本文提出了一种数值研究,用于基于新方法初步评估海上风力涡轮机(OWT)塔和转子机舱组件(RNA)的动力响应和允许的海况。该方法基于倒立摆原理,由各种顺序活动组成,为此需要确定海态的允许极限。对于关键的安装活动,已采用数值分析方法对实际操作进行建模。对于限制操作执行的参数,提供了响应统计信息。发现在OWT升空期间至少需要45个种子才能实现对齐力统计的收敛。响应统计信息用于计算与不超过目标概率相对应的特征值。对于升空和交接操作,将这些特征值与响应参数的允许极限进行比较,以建立海况的允许极限。此外,还对关键建模参数进行了敏感性研究。接触元件和铰链连接的弹簧系数,绞盘速度和提升机钢丝的刚度显示为重要的建模参数。本文提供的结果对于未来的有限元建模(FEM)和结构部件的经济高效设计非常重要。

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