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Simulation Model of Wind Turbine 3p Torque Oscillations due to Wind Shear and Tower Shadow

机译:风切变和塔影引起的风力发电机3p转矩振荡的仿真模型

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To determine the control structures and possible power quality issues, the dynamic torque generated by the blades of a wind turbine must be represented. This paper presents an analytical formulation of the generated aerodynamic torque of a three-bladed wind turbine including the effects of wind shear and tower shadow. The comprehensive model includes turbine-specific parameters such as radius, height, and tower dimensions, as well as the site-specific parameter, the wind shear exponent. The model proves the existence of a 3p pulsation due to wind shear and explains why it cannot be easily identified in field measurements. The proportionality constant between the torque and the wind speed is determined allowing direct aerodynamic torque calculation from an equivalent wind speed. It is shown that the tower shadow effect is more dominant than the wind shear effect in determining the dynamic torque, although there is a small dc reduction in the torque oscillation due to wind shear. The model is suitable for real-time wind turbine simulation or other time domain simulation of wind turbines in power systems.
机译:为了确定控制结构和可能的电能质量问题,必须表示由风力涡轮机叶片产生的动态转矩。本文介绍了三叶片风力发电机产生的空气动力扭矩的解析公式,其中包括风切变和塔影的影响。全面的模型包括特定于涡轮的参数,例如半径,高度和塔架尺寸,以及特定于站点的参数(风切变指数)。该模型证明了由于风切变引起的3p脉动的存在,并解释了为什么在野外测量中不容易识别出这种现象。确定扭矩与风速之间的比例常数,从而可以根据等效风速直接计算空气动力学扭矩。结果表明,在确定动态转矩时,塔影效应比风切变效应更占主导地位,尽管由于风切变而使转矩振荡的直流减小很小。该模型适用于电力系统中风力涡轮机的实时风力涡轮机仿真或其他时域仿真。

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