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Trailing-Edge Flap Control for Mitigating Rotor Power Fluctuations of a Large-Scale Offshore Floating Wind Turbine under the Turbulent Wind Condition

机译:湍流风能下用于减轻大型近海浮动风力涡轮机的转子电力波动的后缘襟翼控制

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摘要

A trailing-edge flap control strategy for mitigating rotor power fluctuations of a 5 MW offshore floating wind turbine is developed under turbulent wind inflow. The wind shear must be considered because of the large rotor diameter. The trailing-edge flap control strategy is based on the turbulent wind speed, the blade azimuth angle, and the platform motions. The rotor power is predicted using the free vortex wake method, coupled with the control strategy. The effect of the trailing-edge flap control on the rotor power is determined by a comparison with the rotor power of a turbine without a trailing-edge flap control. The optimal values of the three control factors are obtained. The results show that the trailing-edge flap control strategy is effective for improving the stability of the output rotor power of the floating wind turbine under the turbulent wind condition.
机译:在湍流风流入下显影了用于减轻5 MW海上浮动风力涡轮机的转子动力波动的后缘襟翼控制策略。由于转子直径大,必须考虑风剪。后缘襟翼控制策略基于湍流风速,叶片方位角和平台运动。使用自由涡旋唤醒方法预测转子功率,与控制策略相结合。通过与涡轮机的转子功率的比较而没有后缘襟翼控制的转子功率来确定后缘襟翼控制的效果。获得了三个控制因子的最佳值。结果表明,后缘襟翼控制策略对于提高湍流风条件下浮动风力涡轮机输出转子功率的稳定性有效。

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