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首页> 外文期刊>The Structural Design of Tall and Special Buildings >Application of vector form intrinsic finite element on integrated simulation of wind turbine
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Application of vector form intrinsic finite element on integrated simulation of wind turbine

机译:向量形式本征有限元在风机集成仿真中的应用

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Large wind turbine system is a periodic time-varying system with many rigid-flexible coupling bodies. It is difficult to deal with the singular stiffness matrix produced by the rotation of blades via the traditional finite element method. However, the vector form intrinsic finite element (VFIFE) method can effectively solve the geometric deformation of elastic continuum, the nonlinear or discrete constitutive model, the coupling motion continuum, and rigid body. In this study, a solver program of space beam element is developed by VFIFE method, and three typical examples are chosen to verify its accuracy. And then the integrated simulation of wind turbine system is established, and its dynamic response is analyzed. The natural frequencies of the turbine system, which are obtained by modal parameter identification, can agree well with the results obtained by traditional finite element method. The weighted amplitude wave superposition method and the proper orthogonal decomposition method as well as B-spline surface interpolation are employed to obtain the wind time series of wind turbine under the normal operation condition. The windinduced dynamic response of wind turbine system is calculated by VFIFE method. The numerical results can reflect the periodic influence of gravity on the internal forces of blades and the interaction between blades and the tower.
机译:大型风力发电机系统是具有许多刚柔耦合体的周期性时变系统。通过传统的有限元方法很难处理叶片旋转产生的奇异刚度矩阵。但是,矢量形式固有有限元(VFIFE)方法可以有效地解决弹性连续体的几何变形,非线性或离散本构模型,耦合运动连续体和刚体。本研究采用VFIFE方法开发了空间梁单元求解程序,并选择了三个典型的例子来验证其准确性。然后建立了风机系统的集成仿真,并对其​​动态响应进行了分析。通过模态参数识别获得的涡轮机系统固有频率可以与传统有限元方法获得的结果很好地吻合。采用加权振幅波叠加法和适当的正交分解法以及B样条面插值法,得到了正常运行状态下的风力机风时间序列。采用VFIFE法计算了风力机系统的风动力响应。数值结果可以反映重力对叶片内力的周期性影响以及叶片与塔架之间的相互作用。

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