首页> 外文会议>35th Wind energy symposium 2017 >Collapse of a 47-meter Composite Blade under Combined Bending and Torsion in a Full-scale Static Test
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Collapse of a 47-meter Composite Blade under Combined Bending and Torsion in a Full-scale Static Test

机译:联合弯曲和扭转作用下的47米复合材料叶片在全面静态测试中崩溃

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摘要

This study presents an investigation on structural collapse of a large composite wind turbine blade under combined bending and torsion in a static load test. The initial failure phenomenon prior to the blade collapse is investigated using video recorded images. Post-collapse characteristics of the blade are examined to identify the critical failure modes. A finite element model is constructed considering the constraint effect of loading saddles on the blade section. Structural response of the blade section during the loading process is investigated numerically. It is found that delamination and fracture of the spar cap are two critical failure modes responsible for the root causes of the blade collapse. These critical failure modes are evoked by local buckling of blade shells and shear webs. Numerical results show that the Brazier effect imposes significant crushing pressure to the blade cross section and contribute to local buckling. Moreover, it is found that torsion loads, although insignificant compared with the primary bending loads applied to the blade, affect post-collapse characteristics of the blade in this study.
机译:这项研究提出了在静载荷试验中大型复合风力涡轮机叶片在弯曲和扭转共同作用下的结构塌陷的研究。使用视频记录的图像调查了叶片倒塌之前的初始故障现象。检查刀片的崩溃后特性,以识别关键的故障模式。考虑负载鞍座对叶片截面的约束效应,构造了有限元模型。数值分析了叶片部分在加载过程中的结构响应。发现翼梁盖的分层和断裂是导致叶片塌陷的根本原因的两个关键失效模式。这些严重的失效模式是由叶片壳和剪切腹板的局部弯曲引起的。数值结果表明,火盆效应对叶片横截面施加了很大的压碎压力,并导致局部屈曲。而且,发现在该研究中,尽管与施加到叶片上的主要弯曲载荷相比,扭转载荷虽然微不足道,但仍影响叶片的塌陷后特性。

著录项

  • 来源
    《35th Wind energy symposium 2017》|2017年|372-377|共6页
  • 会议地点 Grapevine(US)
  • 作者

    Xiao Chen;

  • 作者单位

    National Laboratory of Wind Turbine Blade Research Development Center, Institute of Engineering Thermophysics (IET-Wind), Chinese Academy of Sciences, Beijing, China, 100190;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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