论文标题

大气条件对偏航未对准公用事业规模的风力涡轮机的电力产生的影响

Influence of atmospheric conditions on the power production of utility-scale wind turbines in yaw misalignment

论文作者

Howland, Michael F., Gonzalez, Carlos Moral, Martinez, Juan Jose Pena, Quesada, Jesus Bas, Larranaga, Felipe Palou, Yadav, Neeraj K., Chawla, Jasvipul S., Dabiri, John O.

论文摘要

被称为唤醒转向的风电场中领先的上风涡轮机的故意偏航未对准,这表明有潜力是风电源功率最大化的集体控制方法。最佳控制策略以及唤醒转向对风电场电源产生的影响,部分原因是逆风偏航未对准的风力涡轮机的功率降解。在大气边界层中,风速和方向在风力涡轮转子区域可能会有很大差异,具体取决于大气条件和稳定性,导致自由式涡轮发电,这是不对称的,这是偏航未对准方向的函数以及在昼夜周期中哪些变化。在这项研究中,我们提出了一个模型,用于基于空气动力学刀片元件在偏航未对准中发电的模型,该模型结合了风速和方向在涡轮转子区域的变化的影响。使用多个公用事业尺度的风力涡轮机进行现场实验,以根据风条件来表征偏航的自由式操作涡轮机的功率,并使用实验数据对模型进行验证。偏航未对准的可变速度风力涡轮机的产生取决于偏航未对准,大气条件和风力涡轮机控制系统之间的非线性相互作用。

The intentional yaw misalignment of leading, upwind turbines in a wind farm, termed wake steering, has demonstrated potential as a collective control approach for wind farm power maximization. The optimal control strategy, and resulting effect of wake steering on wind farm power production, are in part dictated by the power degradation of the upwind yaw misaligned wind turbines. In the atmospheric boundary layer, the wind speed and direction may vary significantly over the wind turbine rotor area, depending on atmospheric conditions and stability, resulting in freestream turbine power production which is asymmetric as a function of the direction of yaw misalignment and which varies during the diurnal cycle. In this study, we propose a model for the power production of a wind turbine in yaw misalignment based on aerodynamic blade elements which incorporates the effects of wind speed and direction changes over the turbine rotor area in yaw misalignment. A field experiment is performed using multiple utility-scale wind turbines to characterize the power production of yawed freestream operating turbines depending on the wind conditions, and the model is validated using the experimental data. The resulting power production of a yaw misaligned variable speed wind turbine depends on a nonlinear interaction between the yaw misalignment, the atmospheric conditions, and the wind turbine control system.

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