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首页> 外文期刊>Journal of offshore mechanics and arctic engineering >Frequency Versus Time Domain Fatigue Analysis of a Semisubmersible Wind Turbine Tower
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Frequency Versus Time Domain Fatigue Analysis of a Semisubmersible Wind Turbine Tower

机译:半潜式风力发电机塔架的频域与时域疲劳分析

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摘要

The current paper deals with a study of a semisubmersible wind turbine (WT), where short-term tower base bending moments and tower fatigue damage were estimated by a frequency domain (FD) method. Both a rigid structure assumption and a generalized degree-of-freedom (DOF) model for including the first flexible mode of the turbine tower were investigated. First, response to wind and wave loads was considered separately, then superposition was used to find the response to combined wind and wave loading. The bending moments and fatigue damage obtained by these methods were compared to results from a fully coupled, nonlinear time domain (TD) analysis. In this study a three column, catenary moored semisubmersible with the NREL 5 MW turbine mounted on one of the columns was modeled. The model was inspired by the WindFloat concept. The TD simulation tool used was Simo-Riflex-AeroDyn from Marintek and CeSOS. The FD method gave a good representation of the tower base bending moment histories for wave-only analyses, for the moderate sea states considered in these analyses. With the assumption that the structure is completely rigid, bending moments were underestimated, but including excitation of the elastic tower and blades, improved the results. The wind-induced low-frequency bending moments were not captured very well, which presumably comes from a combination of nonlinear effects being lost in the linearization of the thrust force and that the aerodynamic damping model was derived for a fixed turbine. Nevertheless, standard deviations of the bending moments were still reasonable. The FD model captured the combined wind and wave analyses quite well when a generalized coordinates model for wind excitation of the first bending mode of the turbine was included. The FD fatigue damage predictions were underestimated by 0-60%, corresponding to discrepancies in standard deviations of stress in the order of 0-20%.
机译:当前的论文研究了半潜式风力发电机(WT),其中短期塔基弯矩和塔架疲劳损伤是通过频域(FD)方法估算的。研究了包括涡轮塔的第一柔性模式在内的刚性结构假设和广义自由度(DOF)模型。首先,分别考虑了对风荷载和波浪荷载的响应,然后使用叠加来查找对风荷载和波浪荷载组合的响应。将通过这些方法获得的弯矩和疲劳损伤与完全耦合的非线性时域(TD)分析的结果进行比较。在这项研究中,对安装在其中一列上的NREL 5 MW涡轮机的三列悬链式半潜式潜水器进行了建模。该模型的灵感来自WindFloat概念。使用的TD模拟工具是Marintek的Simo-Riflex-AeroDyn和CeSOS。 FD方法很好地表示了仅波分析的塔基弯矩历史,因为这些分析考虑了中度海况。假设结构是完全刚性的,则弯矩被低估了,但是包括弹性塔架和叶片的激励,改善了结果。风引起的低频弯矩没有很好地捕获,这大概是由于在推力线性化过程中损失了非线性效应,并且推导了固定涡轮的气动阻尼模型。尽管如此,弯矩的标准偏差仍然是合理的。当包括用于涡轮机第一弯曲模式的风激励的广义坐标模型时,FD模型很好地捕获了风和波浪的组合分析。 FD疲劳损伤的预测被低估了0-60%,这对应于应力标准偏差的差异为0-20%。

著录项

  • 来源
    《Journal of offshore mechanics and arctic engineering》 |2015年第1期|011901.1-011901.11|共11页
  • 作者

    Marit I. Kvittem; Torgeir Moan;

  • 作者单位

    Centre for Ships and Ocean Structures, Norwegian Research Centre for Offshore Wind Technology, NTNU, Trondheim N-7491, Norway;

    Centre for Ships and Ocean Structures, Norwegian Research Centre for Offshore Wind Technology, Centre for Autonomous Marine Operations and Systems, NTNU, Trondheim N-7491, Norway;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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