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A study of the wake effects on the wind characteristics and fatigue loads for the turbines in a wind farm

机译:尾流对风电场涡轮机风特性和疲劳载荷的影响研究

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摘要

With 9 multi-megawatt (MW) wind turbines and a total capacity of 22 MW, Yeongheung Wind Farm is one of the major wind farm projects in Korea. Because there are many wind turbines installed in a small area, the wake effects on the wind turbine power and load need to be investigated carefully. This study analyzes the wind data measured before and after the construction of Yeongheung Wind Farm to examine the wake effect from the wind farm on the mean wind speed, wind shear, and turbulence intensity. Although mean wind speeds were similar in both periods, turbulence intensity and wind shear were significantly increased due to the wake effect by nearby turbines. Power performance and fatigue load analyses of the wind models for each time period were performed using the multi-MW wind turbine model. The wake effect caused the wind speed distribution of Period 2 to be lower than that of Period 1 in the wind speed range of 5-15 m/s, resulting in an about 7% reduction in annual energy production (AEP). Because there was only 0.4% difference in AEP loss between the results obtained using steady and dynamic power curve, we found that the mean wind speed had more influence on AEP than did turbulence intensity. From fatigue analysis, it was determined that the high turbulence intensity and the wind shear gradient in Period 2 caused the high fluctuation of loads, increasing the damage equivalent load (DEL) of Period 2 by 30-50% from Period 1. Although the wind speed distribution of Period 2 was certainly lower than IEC class IIIC, the fatigue loads showed up to 20% higher results for almost all load components. Therefore, we were able to confirm that high turbulence intensity significantly increases the fatigue load.
机译:永兴风电场拥有9兆瓦(MW)风力涡轮机,总容量为22 MW,是韩国的主要风电场项目之一。由于在一个较小的区域中安装了许多风力涡轮机,因此需要仔细研究尾流对风力涡轮机功率和负载的影响。本研究分析了在永兴风电场建设前后测量​​的风数据,以检验风电场对平均风速,风切变和湍流强度的尾流影响。尽管两个时期的平均风速相似,但是由于附近涡轮的尾流效应,湍流强度和风切变显着增加。使用多兆瓦风力涡轮机模型对每个时间段的风力模型进行了动力性能和疲劳载荷分析。尾流效应在5-15 m / s的风速范围内导致周期2的风速分布低于周期1的风速分布,导致年度能源生产(AEP)降低约7%。由于使用稳定功率曲线和动态功率曲线得出的结果之间AEP损失仅相差0.4%,因此我们发现平均风速对AEP的影响比湍流强度更大。根据疲劳分析,可以确定,第2阶段的高湍流强度和风切变梯度引起了载荷的高波动,使第2阶段的损伤当量载荷(DEL)比第1阶段增加了30-50%。周期2的速度分布肯定低于IEC IIIC级,几乎所有负载分量的疲劳负载结果都高出20%。因此,我们可以确认高湍流强度会显着增加疲劳负荷。

著录项

  • 来源
    《Renewable energy》 |2015年第2期|536-543|共8页
  • 作者单位

    Korea Institute of Energy Research, 152 Gajeong-ro, Yuseong-gu, Daejeon 305-343, Republic of Korea;

    Korea Institute of Energy Research, 152 Gajeong-ro, Yuseong-gu, Daejeon 305-343, Republic of Korea;

    Korea Institute of Energy Research, 152 Gajeong-ro, Yuseong-gu, Daejeon 305-343, Republic of Korea;

    Korea Institute of Energy Research, 152 Gajeong-ro, Yuseong-gu, Daejeon 305-343, Republic of Korea;

  • 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

    Multi-megawatt wind; Wake effect; Wind farm; Turbulence intensity; Fatigue load; Power performance;

    机译:兆瓦级风;唤醒效果;风电场;湍流强度疲劳负荷动力表现;

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