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Rotational Turbulent Wind Field Simulation of Wind Turbine

机译:风力涡轮机的旋转湍流风电场仿真

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In order to accurately obtain the influence of rotational effect on fluctuating component of turbulent wind acted on wind turbine, rotational Fourier spectrum with considering rotational effect of rotor was deduced. Physical nature of the rotational Fourier spectrum embodied by coherence function and phase lag was indicated. Auto power spectral density and cross power spectral density of rotational Fourier spectrum with introducing phase lag were proposed. The spectrum matrix constructed by the module of rotational Fourier spectrum was decomposed with Cholesky's method, according to the spectrum representation method with introducing phase lag, the random turbulent wind speed field was generated by superposing a set of cosine functions. Finally, an example involving simulation of the longitudinal turbulent wind velocity time series of a 1.5 MW three-bladed pitch regulated wind turbine was investigated. The target spectrum and simulated spectrum were compared. The result shows that the proposed algorithm is more accurate to simulate the fluctuating wind velocity of rotational blade.
机译:为了准确地获得旋转效应对风力涡轮机上作用的湍流波动分量的影响,推导了考虑转子旋转效应的旋转傅里叶谱。表示由相干功能和相位滞后体现的旋转傅里叶谱的物理性质。提出了具有引入阶段滞后的旋转傅里叶谱的自动功率谱密度和交叉功率谱密度。由旋转傅里叶频谱模块构成的频谱矩阵用尖端的方法分解,根据具有引入阶段滞后的频谱表示方法,通过叠加一组余弦功能来产生随机湍流风速场。最后,研究了涉及模拟纵向湍流风速时间序列的纵向湍流风速时间序列的示例。比较目标频谱和模拟光谱。结果表明,所提出的算法更准确地模拟旋转叶片的波动风速。

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