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作 者:袁李杰 孟航[1] 刘永前[1] 武广兴 刘鑫 Yuan Lijie;Meng Hang;Liu Yongqian;Wu Guangxing;Liu Xin(School of New Energy,North China Electric Power University,Beijing 102206,China;Clean Energy Technology Research Institute,China Huaneng Group Co.,Ltd.,Beijing 102209,China)
机构地区:[1]华北电力大学新能源学院,北京102206 [2]中国华能集团清洁能源技术研究院有限公司,北京102209
出 处:《太阳能学报》2023年第11期387-392,共6页Acta Energiae Solaris Sinica
基 金:国家重点研发计划(2022YFB4201302);国家自然科学基金(52006071);高效高可靠大型海上风电机组技术及风电场设计技术(HNKJ20-H88-01)。
摘 要:采用自由涡尾迹法探索漂浮式风电机组在偏航工况下,受平台纵摇影响时功率与气动特性变化规律。研究结果表明:随着偏航角的增加,输出功率以二阶余弦函数下降,推力以一阶余弦函数下降;动态局部轴向诱导因子最小值产生从0°~22°的相移;法向力系数曲线分解所得基频与二倍频分量振幅和偏航角正相关,三倍频分量与偏航无相关性;其中,风轮旋转与纵摇运动耦合导致法向力系数产生相对运动频率更高频的三倍频分量。In this research,the free vortex wake method was used to investigate the change of power and aerodynamic characteristics of floating wind turbine under yaw conditions when influenced by pitching motion.The research results showe that as the yaw angle increased,the output power decreases in a second-order cosine function and the thrust decreases in a first-order cosine function.The minimum value of the dynamic local axial induction factor has a phase shift from 0 to 22 degrees.The decomposition of the normal force coefficient curve reveales that the amplitude of the fundamental frequency and the second harmonic components are positively correlated with the yaw angle,while the third harmonic component is not correlated with the yaw angle.Among them,the coupling of wind turbine rotation and pitching motion resultes in a higher frequency component of the normal force coefficient relative to the motion frequency.
分 类 号:TK83[动力工程及工程热物理—流体机械及工程]
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