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A study of the performance benefits of closely-spaced lateral wind farm configurations

机译:紧凑型横向风电场配置的性能优势研究

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摘要

Scaled wind turbine experiments were conducted in order to evaluate the beneficial effect of closely-spaced lateral wind turbine configurations on the performance of a wind farm. Two outer wind turbines were spaced apart with a particular gap distance and the longitudinal setback of a central rotor was varied at each gap width. The turbine placement resulted in tip-to-tip separation distances that ranged from 1 diameter (D) to 0.25D. Additionally, the performance of a wind farm layout in rough and smooth boundary layers, designed to mimic onshore and offshore conditions, respectively, was evaluated. It was observed that a narrow gap between several laterally-aligned rotors creates an in-field blockage effect that results in beneficial flow acceleration through the gap. This increase in speed increases the power output of the central turbine when its longitudinal setback is between OD and 2.5D. A cumulative increase in power output of 17% was observed when 3 rotors were aligned in a lateral plane with a blade tip separation of 0.5D or 0.25D, compared to the same number of rotors in isolation. While the benefits of closely-spaced wind turbines were observed in both of the tested boundary layers, the performance benefits with a smooth boundary layer were smaller than with a rough boundary layer. These results may lead to new wind farm design methodologies for certain topology- and wind distribution-specific sites and suggest that wind turbines can be closely-spaced in the lateral direction in order to obtain substantial increases in power.
机译:为了评估近距离横向风力涡轮机配置对风力发电场性能的有益影响,进行了规模化的风力涡轮机实验。两个外部风力涡轮机以特定的间隙距离间隔开,并且中央转子的纵向缩进在每个间隙宽度处均发生变化。涡轮机的放置导致尖端到尖端的分离距离范围从1直径(D)到0.25D。此外,评估了分别模拟陆上和海上条件的风电场布局在粗糙和光滑边界层中的性能。可以观察到,几个横向对齐的转子之间的狭窄缝隙会产生场内阻塞效应,从而通过该缝隙产生有益的流动加速。当中央涡轮机的纵向缩进量介于OD和2.5D之间时,速度的增加将增加中央涡轮机的功率输出。与隔离状态下相同数量的转子相比,当3个转子在侧面对齐且叶片尖端间距为0.5D或0.25D时,观察到功率输出的累积增加了17%。虽然在两个测试边界层中都观察到了紧密排列的风力涡轮机的好处,但光滑边界层的性能收益要小于粗糙边界层的性能收益。这些结果可能会导致针对某些特定于拓扑结构和特定于风力分布的站点的新风电场设计方法,并表明风力涡轮机可以在横向方向上紧密隔开,从而获得更大的功率。

著录项

  • 来源
    《Renewable energy》 |2013年第11期|128-135|共8页
  • 作者单位

    Carleton University, Dept. of Mechanical and Aerospace Engineering, 1125 Colonel By Drive, Ottawa, Ontario, Canada K1S 5B6;

    Carleton University, Dept. of Mechanical and Aerospace Engineering, 1125 Colonel By Drive, Ottawa, Ontario, Canada K1S 5B6;

    Carleton University, Dept. of Mechanical and Aerospace Engineering, 1125 Colonel By Drive, Ottawa, Ontario, Canada K1S 5B6;

  • 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

    Wind energy; Blockage; Lateral separation; Wakes; Wind turbines;

    机译:风能;堵塞;横向分离;唤醒;风力发电机;

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