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首页> 外文期刊>Wind Energy >Validation of the dynamic wake meander model for loads and power production in the Egmond aan Zee wind farm
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Validation of the dynamic wake meander model for loads and power production in the Egmond aan Zee wind farm

机译:Egmond aan Zee风电场中用于负荷和发电的动态尾流曲折模型的验证

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摘要

This paper investigates wake effects on load and power production by using the dynamic wake meander (DWM) model implemented in the aeroelastic code HAWC2. The instationary wind farm flow characteristics are modeled by treating the wind turbine wakes as passive tracers transported downstream using a meandering process driven by the low frequent cross-wind turbulence components. The model complex is validated by comparing simulated and measured loads for the Dutch Egmond aan Zee wind farm consisting of 36 Vestas V90 turbine located outside the coast of the Netherlands. Loads and production are compared for two distinct wind directions—a free wind situation from the dominating southwest and a full wake situation from northwest, where the observed turbine is operating in wake from five turbines in a row with 7D spacing. The measurements have a very high quality, allowing for detailed comparison of both fatigue and min-mean-max loads for blade root flap, tower yaw and tower bottom bending moments, respectively. Since the observed turbine is located deep inside a row of turbines, a new method on how to handle multiple wakes interaction is proposed. The agreement between measurements and simulations is excellent regarding power production in both free and wake sector, and a very good agreement is seen for the load comparisons too. This enables the conclusion that wake meandering, caused by large scale ambient turbulence, is indeed an important contribution to wake loading in wind farms.
机译:本文通过使用气动弹性代码HAWC2中实现的动态尾流曲折(DWM)模型研究尾流对负载和功率产生的影响。通过将风力涡轮机尾流视为被动示踪剂,使用低频率的横风湍流分量驱动的曲折过程将风力涡轮机尾流输送到下游,从而对固定风电场的流量特性进行建模。通过比较荷兰Egmond aan Zee风力发电场的模拟负载和实测负载,验证了模型复杂性,该风力发电场由位于荷兰海岸外的36台Vestas V90涡轮机组成。比较了两个不同风向的负荷和生产情况-主导西南方向的自由风情况和西北方向的完全尾风情况,在该情况下,观察到的涡轮机在连续7个间隔的五个涡轮机中处于尾流状态。这些测量具有很高的质量,可以分别比较叶片根部襟翼,塔架偏航角和塔底弯曲力矩的疲劳载荷和最小均值最大载荷。由于观察到的涡轮机位于一排涡轮机内部的深处,因此提出了一种有关如何处理多重尾流相互作用的新方法。测量和仿真之间的协议对于自由和尾流领域的电力生产都非常出色,并且在负载比较方面也可以看到非常好的协议。这可以得出这样的结论:由大规模的环境湍流引起的尾流曲折确实是对风电场中尾流负荷的重要贡献。

著录项

  • 来源
    《Wind Energy》 |2013年第4期|605-624|共20页
  • 作者单位

    Technical University of Denmark, Wind Energy Division, Building 118, PO Box 49, 4000 Roskilde, Denmark;

    Technical University of Denmark, Wind Energy Division, Building 118, PO Box 49, 4000 Roskilde, Denmark;

    Technical University of Denmark, Wind Energy Division, Building 118, PO Box 49, 4000 Roskilde, Denmark;

    Technical University of Denmark, Wind Energy Division, Building 118, PO Box 49, 4000 Roskilde, Denmark;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    wake effects; wind turbine; loads; power;

    机译:唤醒效果;风力发电机负载;功率;

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