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Increased Strength in Wind Turbine Blades through Innovative Structural Design

机译:通过创新的结构设计增加风力涡轮机叶片的强度

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When a system design approach is applied to wind turbine blades, manufacturing and structural requirements are included along with aerodynamic considerations in the design optimization. The resulting system-driven design includes several innovative structural features such as flat-back airfoils, a constant thickness carbon spar-cap, and a thin, large diameter root. Subscale blades were manufactured to evaluate the as-built integrated performance. The design resulted in a 22% reduction in mass, but withstood over 300% of its design load during testing. Compressive strains of nearly 0.9% were measured in the carbon spar-cap. The test results from this and an earlier design are compared, as are finite element models of each design. Included in the analysis is a review of the acoustic emission events that were detected through the use of surface mounted microphones.
机译:当系统设计方法应用于风力涡轮机叶片时,包括设计优化中的空气动力学考虑,包括制造和结构要求。所得到的系统驱动设计包括多种创新的结构特征,例如平面翼型,恒定厚度碳垫帽和薄的大直径根。亚铁刀片被制造以评估竣工的集成性能。该设计导致质量减少22%,但在测试期间,其设计负荷的300%超过300%。在碳垫帽中测量近0.9%的压缩菌株。比较了这一点和早期设计的测试结果,每个设计的有限元模型都是如此。分析中包括在审查通过使用表面安装的麦克风检测的声发射事件。

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