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Dynamic Modeling of H-type Floating VAWT considering the Rigid - Flexible Coupling motions

机译:考虑刚性-柔性耦合运动的H型浮动VAWT的动力学建模

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Dynamical characteristics of the H-type floating VAWT (vertical axis wind turbine) were studied. The wind turbine blades and the tower were treated as flexible bodies, and the floating foundation was treated as the rigid body. Considering the nonlinear deformations of the flexible bodies, the Lagrangian equation was used to establish the dynamic equations of wind turbine system. The loads included the wave forces, the wind loads, the mooring forces and the damping forces of the wind turbine system. A numerical calculation code was developed and verified. The innovation of the code is the coupling of rigid-flexible-aerodynamic-hydrodynamic of the floating wind turbine system. Taking the 5MW wind turbine as an example, the directions of the wind and the wave were considered as the same. Then the dynamic responses of the floating foundation, the tower and the blades were calculated. The results show that the wave frequency is the main frequency component of the responses of pitch, heave and surge of the floating foundation. 2P frequency (P is the rotational frequency of the wind turbine) accounts for a higher proportion for the sway, roll and yaw of the floating foundation. 2P and 4P are the main frequency components of the tower motions. 1P is the main frequency component of the blades' motions. The 2nd mode of the blades and tower are considered. In the following research, the higher modes should be considered to improve the calculation accuracy. Besides, the model test is needed to verify the model further in the subsequent work.
机译:研究了H型浮动式VAWT(垂直轴风力发电机)的动力特性。将风力涡轮机叶片和塔架视为柔性体,将浮动基础视为刚性体。考虑到柔性体的非线性变形,采用拉格朗日方程建立了风力发电机系统的动力学方程。载荷包括风力涡轮机系统的波浪力,风载荷,系泊力和阻尼力。开发并验证了数值计算代码。该规范的创新之处在于浮动风力涡轮机系统的刚性-柔性-空气动力-水动力耦合。以5MW风力发电机为例,风和波浪的方向被认为是相同的。然后计算了浮动地基,塔架和叶片的动力响应。结果表明,波浪频率是浮动基础的俯仰,升沉和浪涌响应的主要频率成分。 2P频率(P是风力涡轮机的旋转频率)在浮动基础的摇摆,横摇和横摆中占较高的比例。 2P和4P是塔架运动的主要频率分量。 1P是叶片运动的主要频率分量。考虑叶片和塔架的第二种模式。在以下研究中,应考虑使用更高的模式以提高计算精度。此外,在后续工作中还需要进行模型测试以进一步验证模型。

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