复合材料风电叶片结构强度非线性分析
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TB332

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国家自然科学基金资助项目(51967020)。


Nonlinear analysis of the structural strength of a composite wind turbine blade
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    摘要:

    以100 kW风电叶片为对象,建立了叶片复合材料结构非线性三维有限元模型。依据德国船级社GL规范的要求,在叶片有限元模型上分别施加4个方向极限载荷,分析了叶片应变和安全因子分布,同时对比分析了叶片线性和非线性屈曲稳定性。结果表明:在挥舞载荷下,较大的展向应变主要分布在叶片根部圆柱段与最大弦长之间的过渡段和叶片中部区域,叶片的第1阶线性和非线性屈曲均发生在靠近叶片尖部梁帽位置,采用非线性分析方法比线性方法更加保守;在摆振载荷下,叶片较大的展向应变主要分布在叶片中部尾缘区域,屈曲分别发生在叶片最大弦长截面的前缘和尾缘位置,采用线性分析方法比非线性方法更加保守。在4个方向的极限载荷条件下,叶片第1阶特征值屈曲载荷因子均大于非线性屈曲载荷因子。

    Abstract:

    The nonlinear finite element model of a 100 kW wind turbine blade was built to simulate the composite structural responses. According to the GL guidelines, ultimate loads in 4 directions were applied to the blade model to analyze the strain and safety factor distributions, and the linear and nonlinear buckling behaviors. It is found that under the condition of an extreme flap-wise load, a large strain happens in the middle of the blade and the transition between the blade root and the maximum chord section; the first eigenvalue and nonlinear bucklings occur around the blade tip; the nonlinear buckling analysis is more conservative than the linear analysis. Under the conditions of extreme edge-wise loads, a large strain exists at the trailing edge of the middle of the blade, and the first eigenvalue and nonlinear bucklings occur around the trailing and leading edges of the maximum chord section; in this case, the linear buckling analysis is more conservative than the nonlinear analysis. The first eigenvalue buckling load factors are larger than the nonlinear buckling load facors under the limit load conditions in all 4 directions.

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徐立军,王维庆.复合材料风电叶片结构强度非线性分析[J].重庆大学学报,2021,44(2):13-24.

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  • 收稿日期:2019-05-24
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  • 在线发布日期: 2021-03-06
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