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A Four-rigid-body Element Model and Computer Simulation for Flexible Components of Wind Turbines

机译:风力发电机组柔性部件的四刚体元模型与计算机仿真

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In this paper, a four-rigid-body element model is presented for description of flexible components of a horizontal axis wind turbine (HAWT). The element consists of four rigid bodies arranged in a chain structure fashion. The bodies of each element are linked by two universal joints at two ends, and one cylindrical joint at the middle. Thus each element has six degrees of freedom. They are four degrees of freedom for bending, one degree of freedom for torsion, and one degree of freedom for axial stretching. For each degree of freedom, a spring is used to describe the stiffness of the component. Stiffness of each spring is obtained by using potential energy equivalence between a Timoshenko beam and these springs. With these considerations, flexible components of a HAWT such as blades and tower may then be represented by connecting several such elements together. Based on four-rigid-body element model, the tower and blades of a HAWT are constructed. Their equations of motion are then derived via Kane's dynamical method. Commercial computational multibody dynamic analysis software Autolev has been used for motion simulation of tower and blades under given initial conditions. Simulation results associated with the tower indicate that four-rigid-body element model is suitable for analysis of dynamic loads, modal, and vibration of wind turbines with respect to fixed and moving references at high computational efficiency and low simulation costs. The approach is also a good candidate for simulating dynamical behaviors of wind turbines and preventing their fatigue failures in time domain.
机译:在本文中,提出了一种四刚体元模型来描述水平轴风力涡轮机(HAWT)的柔性组件。该单元由四个以链结构形式排列的刚体组成。每个元件的主体通过两端的两个万向节和中间的一个圆柱形接头相连。因此,每个元素都有六个自由度。它们是弯曲的四个自由度,扭转的一个自由度和轴向拉伸的一个自由度。对于每个自由度,都使用弹簧来描述组件的刚度。通过使用季莫申科梁和这些弹簧之间的势能当量来获得每个弹簧的刚度。出于这些考虑,然后可以通过将多个这样的元件连接在一起来表示HAWT的柔性组件,例如叶片和塔架。基于四刚体元模型,构造了HAWT的塔架和叶片。然后通过凯恩的动力学方法得出他们的运动方程。商业计算多体动力学分析软件Autolev已用于给定初始条件下塔架和叶片的运动仿真。与塔架相关的仿真结果表明,四刚体元模型适合以较高​​的计算效率和较低的仿真成本来分析风力涡轮机相对于固定和移动参考的动态载荷,模态和振动。该方法还是用于模拟风力涡轮机的动态行为并防止其在时域内发生疲劳故障的理想选择。

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