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A Critical Evaluation of Structural Analysis Tools used for the Design of Large Composite Wind Turbine Rotor Blades under Ultimate and Cycle Loading

机译:大型复合材料风力发电机转子叶片在极限和循环载荷下的结构分析工具评估

摘要

Rotor blades for 10-20MW wind turbines may exceed 120m. To meet the demanding requirements of the blade design, structural analysis tools have been developed individually and combined with commercial available ones by blade designers. Due to the various available codes, understanding and estimating the uncertainty introduced in the design calculations by using these tools is needed to allow assessment of the effectiveness of any future design modification. For quantifying the introduced uncertainty a reference base was established within INNWIND.EU in which the several structural analysis concepts are evaluated. This paper shows the major findings of the comparative work performed by six organizations (universities and research institutes) participating in the benchmark exercise. The case concerns a 90m Glass/Epoxy blade of a horizontal axis 10MW wind turbine. The detailed blade geometry, the material properties of the constitutive layers and the aero-elastic loads formed the base by which global and local blade stiffness and strength are evaluated and compared. Static, modal, buckling and fatigue analysis of the blade were performed by each partner using their own tools; fully in-house developed or combined with commercially available ones, with its specific structural analysis approach (thin wall theory and finite element models using beam, shell or solid elements) and their preferable analysis type (linear or geometrical non-linear). Along with sectional mass and stiffness properties, the outcome is compared in terms of displacements, stresses, strains and failure indices at the ply level of the blade structure, eigen-frequencies and eigen-modes, critical buckling loads and Palmgren-Miner damage indices due to cycle loading. Results indicate that differences between estimations range from 0.5% to even 40%, depending on the property compared. Modelling details, e.g. load application on the numerical models and assumptions, e.g. type of analysis, lead to these differences. The paper covers these subjects, presenting the modelling uncertainty derived.
机译:10-20MW风力发电机的转子叶片可能会超过120m。为了满足刀片设计的苛刻要求,已经单独开发了结构分析工具,并由刀片设计人员将其与商用工具结合使用。由于存在各种可用的代码,因此需要使用这些工具来理解和估算在设计计算中引入的不确定性,以评估任何未来设计修改的有效性。为了量化引入的不确定性,在INNWIND.EU中建立了参考库,在其中评估了几种结构分析概念。本文显示了参加基准测试的六个组织(大学和研究机构)进行的比较工作的主要发现。该案例涉及水平轴10MW风力发电机的90m玻璃/环氧树脂叶片。详细的叶片几何形状,本构层的材料特性以及气动弹性载荷构成了基础,通过该基础可以评估和比较整体和局部叶片的刚度和强度。叶片的静态,模态,屈曲和疲劳分析由每个合作伙伴使用各自的工具进行;完全由内部开发或与市场上可买到的结合,并具有特定的结构分析方法(使用梁,壳或实体元素的薄壁理论和有限元模型)及其优选的分析类型(线性或几何非线性)。除截面质量和刚度特性外,还根据叶片结构的层级上的位移,应力,应变和破坏指数,本征频率和本征模态,临界屈曲载荷和应有的Palmgren-Miner破坏指数对结果进行比较。循环加载。结果表明,估计之间的差异介于0.5%甚至40%之间,具体取决于所比较的属性。建模细节,例如在数值模型和假设上加载应用程序,例如分析类型,导致这些差异。本文涵盖了这些主题,介绍了得出的建模不确定性。

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