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Numerical Analysis of a Segmented Wind Turbine Blade Using the Substructure Method

机译:使用子结构方法分段风力涡轮机叶片的数值分析

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The wind turbine blade segmentation development remains a tough challenge for constructors to reduce the blade manufacturing and transport cost. In this paper, numerical analysis is developed in order to study the dynamic characteristics of a segmented wind turbine blade assembled with a spar. The spar and the blade segments are assimilated to a shell structure with different homogeneous and isotropic materials. Accordingly, the three nodes triangular shell element DKT18 is adopted to model the blade. To reduce the problem size the Craig-Bampton substructure method is applied. This study covers the effects the of twist angle on the blade natural frequencies. To validate the accuracy and reliability of the proposed substructuring approach, numerical results obtained from the present study were compared with those determined by modal analysis using ABAQUS software. Results showed that the blade natural frequencies are not monotonically varying with respect to the twist angle which must be investigated to be well above the wind turbine system frequencies.
机译:风力涡轮机刀片分割开发仍然是构造函数的艰难挑战,以减少叶片制造和运输成本。在本文中,开发了数值分析,以研究用翼梁组装的分段风力涡轮机叶片的动态特性。翼梁和叶片段具有不同的均匀和各向同性材料的壳结构。因此,采用三个节点三角形壳元件DKT18来模拟刀片。为了减少问题大小,应用CRAIG-BAMPTON子结构方法。本研究涵盖了扭曲角度对叶片自然频率的影响。为了验证所提出的子结构方法的准确性和可靠性,将从本研究中获得的数值结果与使用ABAQUS软件的模态分析确定的那些。结果表明,叶片自然频率相对于必须研究的扭转角度不在单调上变化,这是远高于风力涡轮机系统频率。

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