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Lidar measurements of yawed-wind-turbine wakes: characterization and validation of analytical models

机译:LIDAR测量的摇摆风涡轮机唤醒:分析模型的表征和验证

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Wake measurements of a scanning Doppler lidar mounted on the nacelle of a full-scale wind turbine during a wake-steering experiment were used for the characterization of the wake flow, the evaluation of the wake-steering set-up, and the validation of analytical wake models. Inflow-scanning Doppler lidars, a meteorological mast, and the supervisory control and data acquisition?(SCADA) system of the wind turbine complemented the set-up. Results from the wake-scanning Doppler lidar showed an increase in the wake deflection with the yaw angle and that the wake deflection was not in all cases beneficial for the power output of a downstream turbine due to a bias of the inflow wind direction perceived by the yawed wind turbine and the wake-steering design implemented. Both observations could be reproduced with an analytical model that was initialized with the inflow measurements. Error propagation from the inflow measurements that were used as model input and the power coefficient of a waked wind turbine contributed significantly to the model uncertainty. Lastly, the span-wise cross section of the wake was strongly affected by wind veer, masking the effects of the yawed wind turbine on the wake cross sections.
机译:在唤醒转向实验期间安装在全尺寸风力涡轮机的机舱上的扫描多普勒连光仪的扫描多普勒激光雷达用于唤醒流动的表征,评估唤醒设置的评估以及分析的验证唤醒模型。流入扫描多普勒Lidars,气象桅杆和监督控制和数据采集?(SCADA)系统的风力涡轮机系统补充了设置。唤醒扫描多普勒LIDAR的结果显示,随着偏航角的唤醒偏转,并且唤醒偏转在所有情况下都没有有利于下游涡轮机的功率输出,这是由于流入风向所感知的偏差撕裂的风力发电机和唤醒转向设计。两种观察都可以通过用流入测量初始化的分析模型来再现。使用作为模型输入的流入测量和唤醒风力涡轮机的功率系数的误差传播与模型不确定性显着贡献。最后,Wake的Span-Wise横截面受风力转向的强烈影响,掩盖了摇摆风力涡轮机在尾截面上的效果。

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