文章摘要
陈文朴, 李 春, 叶 舟, 缪维跑.基于流固耦合的风力机叶片结构稳定性分析Journal of Water Resources and Water Engineering[J].,2016,27(4):179-183
基于流固耦合的风力机叶片结构稳定性分析
Stability analysis of blade structure of wind turbine based on fluid-solid coupling
  
DOI:10.11705/j.issn.1672-643X.2016.04.33
中文关键词: 风力机; 叶片; 流固耦合; 屈曲分析  结构稳定性
英文关键词: wind turbine  blade  fluid-solid coupling  buckling analysis  stability of blade structure
基金项目:国家自然科学基金项目(51176129、51676131); 上海市教育委员会科研创新(重点)项目(13ZZ120、13YZ066); 教育部高等学校博士学科点专项科研基金(博导类)(20123120110008)
Author NameAffiliation
CHEN Wenpua,b, LI Chuna,b, YE Zhoua,b, MIAO Weipaoa (上海理工大学 a.能源与动力工程学院
b.上海市动力工程多相流动与传热重点实验室 上海 200093) 
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中文摘要:
      针对叶片在气动载荷下出现局部屈曲现象,建立了大型复合材料风力机叶片有限元壳体模型,主要研究了叶片结构在流场作用下的稳定性。基于流固耦合方法,借助CFD软件计算得到叶片表面的分布压力,将计算结果导入到叶片结构计算的有限元壳体模型,以此为载荷对叶片进行了屈曲分析。以1.5MW复合材料风力机叶片为例的计算结果表明:复合材料抗压性能较抗拉性能弱,叶片背风面受到压缩载荷,局部屈曲主要出现在叶片背风面,叶根向叶中发展的后缘区位于几何突变区,结构设计较为薄弱,需增加该区域铺层材料的厚度。
英文摘要:
      In the light of phenomenon of local buckling of blade appeared under aerodynamic loads,the paper established the finite element shell model of large-scale composite wind turbine blade,and mainly studied the stability of blade structure under the effect of flow field. Based on fluid-solid coupling method,the paper calculated the distributed stress of blade surface by aid of CFD software . It introduced the calculation results into the finite element model of the blade structure, and carried out the buckling analysis of blade .Taking the blade of 1.5MW composite wind turbine for example, the results show that the compressive properties of composites are weaker than tensile properties of that, the leeward side of blade subjects to compressive load,the local buckling mainly appeared on the leeward side surface of blade. The trailing edge region from the development of leaf blade root is located in the geometric catastrophe zone.The structure design of trailing edge is weak so it is necessary to increase the thickness of layer.
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