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Sensitivity Analysis of Material and Load Parameters to Fatigue Stresses of an Offshore Wind Turbine Monopile Substructure

机译:材料和载荷参数对海上风力涡轮机单桩子结构疲劳应力的敏感性分析

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摘要

Steel monopiles are support structures mostly applied for offshore wind turbines. Their installation is straightforward, in particular, in shallow and medium waters. While the wind turbine tower is primarily affected by wind, the wave loads are dominant for the monopile, as it is submerged to a large extent. This study deals with the influence of uncertainties in material and load parameters on the behaviour of those structures. It is investigated how the scattering of material properties (namely Young's modulus of elasticity) affect the structural response. In addition, loads with different characteristics are applied, and it is examined how the changes in loads influence the structural response. The analysed output data of interest are the extreme stresses leading to the accumulation of fatigue damage. In order for a realistic modelling, wave loads are considered with irregular sea states with different wave characteristics (significant wave heights and wave peak periods). The final aim of the analysis is to classify the effects of specific wave characteristics on the stresses by means of a sensitivity analysis. The analysis shows that variations in the wave peak period have the strongest influence on stress outputs. This effect results from the strong sensitivity of the structural dynamical response to the decrease of the difference between the values of the wave peak frequency and the natural frequencies of the structure. © 2017 The Authors. Published by Elsevier Ltd.
机译:钢单桩是主要用于海上风力涡轮机的支撑结构。它们的安装非常简单,特别是在浅水和中水域中。尽管风力涡轮机塔主要受风影响,但由于单桩的大部分被淹没,波浪载荷占主导地位。这项研究处理了材料和载荷参数的不确定性对这些结构行为的影响。研究了材料特性的散射(即杨氏弹性模量)如何影响结构响应。另外,施加具有不同特性的载荷,并检查载荷的变化如何影响结构响应。所分析的感兴趣的输出数据是导致疲劳损伤累积的极端应力。为了进行逼真的建模,考虑了具有不同波浪特征(显着的波浪高度和波浪峰值周期)的不规则海况下的波浪载荷。分析的最终目的是通过敏感性分析对特定波浪特征对应力的影响进行分类。分析表明,波峰周期的变化对应力输出的影响最大。这种效果是由于结构动力响应对波峰频率值与结构固有频率之间的差值减小的强烈敏感性引起的。 ©2017作者。由Elsevier Ltd.发布

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