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Dynamic analysis of wind turbines including nacelle–tower–foundation interaction for condition of incomplete structural parameters:

机译:结构参数不完整的风力机动态分析,包括机舱-塔-基础相互作用:

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摘要

Considering the complexity structure of wind turbines, it is difficult to establish an accurate model for wind turbines. This article proposed an improved model based on the vibration signal analysis to investigate the onshore wind turbine dynamic behavior. The model is formulated using the Euler–Lagrangian approach in which the dynamic interaction effects between the nacelle and the tower and the effects between the tower and the foundation are considered. The nacelle is assumed as a mass with 2 degrees of freedom at the top of a flexible tower. And the tower is considered as a beam with elastic end support. The foundation stiffness can influence the dynamic response of wind turbines due to the soft soils surrounding the tower base. A rotational spring and a lateral spring derived from the foundation are used to reflect the interaction between the tower and the foundation. Finally, a comparison with existing National Renewable Energy Laboratory 5-MW baseline wind turbine model is performed. And a field e...
机译:考虑到风力涡轮机的复杂性结构,难以建立用于风力涡轮机的精确模型。本文提出了一种基于振动信号分析的改进模型,以研究陆上风力发电机的动态行为。该模型是使用欧拉-拉格朗日方法制定的,其中考虑了机舱与塔架之间的动力相互作用以及塔架与基础之间的动力相互作用。机舱假定为在柔性塔架顶部具有2个自由度的质量。塔被视为具有弹性末端支撑的梁。由于塔基周围的软土,地基刚度会影响风力涡轮机的动力响应。源自地基的旋转弹簧和侧向弹簧用于反映塔架与地基之间的相互作用。最后,与现有的国家可再生能源实验室5兆瓦基准风力涡轮机模型进行了比较。还有一个领域

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