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Effect of tunneling cracks on structural property degradation of wind turbine blades

机译:隧道裂缝对风力涡轮机叶片结构性能降解的影响

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摘要

In this study, a multi-scale structural approach is used to analyze the effect of tunneling cracks on the structural response of wind turbine blades. In this approach, a 2D finite-element-based cross-section analysis and a continuum damage mechanics model are combined to efficiently predict the variation in cross-section stiffnesses and natural frequencies of the blades as a function of the tunneling crack density. By applying this approach to an 86.35-meter wind turbine blade, it is shown how the level of variation of these structural properties depends not only on the degradation of the material properties due to the presence of tunneling cracks but also on the spatial characteristics of the different cross-section regions along the blade, such as spar caps, trailing-edge panels, etc.
机译:在该研究中,多尺度结构方法用于分析隧道裂纹对风力涡轮机叶片结构响应的影响。 在这种方法中,组合了基于2D有限元的横截面分析和连续损伤力学模型,以有效地预测叶片的横截面刚度和叶片的自然频率作为隧道裂纹密度的函数。 通过将这种方法应用于86.35米的风力涡轮机叶片,示出了由于存在隧道裂缝的存在而且对材料特性的劣化而且是如何取决于材料特性的劣化。 沿叶片的不同横截面区域,例如翼梁盖,后缘板等。

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