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Optimal tuning of the tuned mass damper (TMD) for rotating wind turbine blades

机译:旋转风轮机叶片的调谐质量阻尼器(TMD)的最佳调整

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This paper presents the explicit formulas for optimal tuning of the tuned mass damper (TMD) for damping edgewise vibrations in rotating wind turbine blades. A 2-DOF model is first established for the rotating blade-TMD system, which acts as the basis for analytically deriving the optimal frequency-tuning and the optimal damping-tuning formulas. Two optimality criteria are considered, one based on equal dynamic amplification at two neutral frequencies and the other one based on equal modal damping ratio of the free vibration modes. As a result, two slightly different optimal frequency-tuning formulas are obtained. The formula for optimal TMD damping ratio is obtained by means of dynamic amplification analysis, and the optimal damping ratio turns out to be dependent on the rotor rotational speed. Comparison of the two optimal frequency-tuning formulas are performed in terms of the dynamic amplification curves and the root loci, using the NREL 5 MW wind turbine as the numerical example. For realistic rotor rotational speeds, the two optimal frequency-tuning formulas lead to almost identical TMD parameters.
机译:本文提出了用于调谐质量阻尼器(TMD)的最佳调谐的显式公式,以衰减旋转的风力涡轮机叶片中的边向振动。首先为旋转叶片-TMD系统建立一个2-DOF模型,该模型用作解析推导最佳频率调谐和最佳阻尼调谐公式的基础。考虑了两个最优标准,一个基于在两个中性频率处的相等动态放大,另一个基于自由振动模态的相等模态阻尼比。结果,获得了两个略有不同的最佳频率调谐公式。通过动态放大分析得出了最佳TMD阻尼比的公式,而最佳阻尼比则取决于转子转速。使用NREL 5 MW风力发电机作为数值示例,根据动态放大曲线和根轨迹对两个最佳频率调谐公式进行了比较。对于实际的转子转速,两个最佳的频率调谐公式得出几乎相同的TMD参数。

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