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Robustness of support structures for offshore wind turbines - Dynamics, fatigue damage and extreme loads with a damaged foundation

机译:海上风力涡轮机支撑结构的坚固性-动力,疲劳损伤以及基础受损的极端载荷

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摘要

AbstractThis master thesis considers the strength analysis of the offshore wind turbine s jacket support structure with one structural member damaged or weakened, not capable of transferring the loads. A wind turbine and its substructure are usually exposed to environmental loadings (i.e. wind, waves) and described by computer simulations. FEDEM Windpower environment is used to analyse the model of the offshore wind turbine.Firstly, the thesis is to indicate the areas of the largest fatigue damage accumulation in the remaining structure members and to estimate their ultimate strength. The fatigue evaluation of the steel structure elements is based on the Palmgren-Miner linear damage hypothesis. The steel brace member damage has been modelled by reducing the elastic modulus (Young's modulus) or inserting a free-joint mechanism in the middle of the element. Then the results of structure strength calculations before and after damage are collected and compared.Secondly, the analysis assumes a reduction in the fatigue loads applied to the support structure by changing the wind turbine control system. These changes are aimed at decreasing mainly the rotor revolution frequency and generator torque at the same time. The adjustment is achieved by varying a turbine blade pitch. The controller has also been modified to avoid continuous turbine operation at frequencies close to resonance.
机译:摘要本论文考虑了海上风力涡轮机夹套支撑结构的强度分析,该结构的一个构件受到破坏或削弱,无法传递载荷。风力涡轮机及其下部结构通常暴露于环境负荷(即风,浪),并通过计算机模拟来描述。首先利用FEDEM Windpower环境对海上风力发电机组的模型进行分析。首先,本文旨在指出剩余结构构件中疲劳损伤累积最大的区域,并估算其极限强度。钢结构元件的疲劳评估基于Palmgren-Miner线性损伤假设。通过减小弹性模量(杨氏模量)或在单元中间插入自由接头机制来模拟钢支撑构件的损坏。然后,收集并比较损坏前后的结构强度计算结果。其次,分析假设通过更改风力涡轮机控制系统来减少施加到支撑结构的疲劳载荷。这些变化主要是为了同时降低转子转速和发电机转矩。该调节通过改变涡轮叶片的螺距来实现。还对控制器进行了修改,以避免涡轮机在接近共振的频率下连续运行。

著录项

  • 作者

    Hryniewicki Konrad Robert;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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