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Benefits of Two Turbine Rotor Diameters and Hub Heights in the Same Wind Farm

机译:同一风电场中两个涡轮转子直径和轮毂高度的好处

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摘要

Significant turbine-wake interactions greatly reduce power output in a wind farm. If different turbine hub heights and rotor diameters are included in the same wind farm, the wake interference in the farm will be reduced, resulting in a lower cost of energy (COE) than a farm with identical turbines. In this paper, we present a method to model wind farm COE in farms with hub heights and rotor diameters that vary across the wind farm. We also demonstrate how to optimize these wind farms to minimize COE. The results show that COE can be greatly reduced in wind farms with non-homogeneous turbines, especially when the turbines are spaced close together. For a unidirectional wind rose, including different turbine design in the wind farm has a similar decrease in COE to spreading the wind turbines farther apart. When the rotor diameter and hub height of the wind turbines in a farm are optimized uniformly, a COE decrease of 4% to 13% (depending on the grid spacing and wind shear exponent) is achieved compared to the baseline. When the rotor diameter and turbine heights are optimized non-uniformly, with two different diameters and heights throughout the farm, there is a COE decrease of 227c to 41% compared to the baseline. For a more spread wind rose with a dominant probability from the west, there is a COE decrease between 3% and 10% for uniformly optimized rotor diameter and height compared to the baseline. With two optimized rotor diameters and heights through the farm, a COE decrease of 3% to 19% is achieved. For a similar wind rose shifted such that the dominant wind direction is from the northwest, a COE decrease between 3% and 10% results from uniformly optimized wind turbines compared to the baseline. A COE decrease of 3% to 17% compared to the baseline occurs with two different turbines are optimized throughout the wind farm.
机译:显着的涡轮-尾流相互作用极大地降低了风电场的功率输出。如果在同一风力发电场中包括不同的涡轮轮毂高度和转子直径,则将减少该发电场中的尾流干扰,从而导致比具有相同涡轮机的发电场更低的能源成本(COE)。在本文中,我们提出了一种在轮毂高度和转子直径随风力发电场而变化的风力发电场中对风力发电场COE建模的方法。我们还演示了如何优化这些风电场,以最大程度地降低COE。结果表明,在使用非均质涡轮机的风电场中,COE可以大大降低,特别是当涡轮机并排放置时。对于单向风玫瑰,在风电场中使用不同的涡轮机设计,其COE的降低与将风力涡轮机扩展得更远相似。当统一优化农场中风力涡轮机的转子直径和轮毂高度时,与基准相比,COE降低了4%到13%(取决于网格间距和风切变指数)。当转子直径和涡轮高度不均匀优化时,在整个农场中使用两个不同的直径和高度,与基线相比,COE降低227c到41%。如果风的传播更加广泛,并且从西部开始占主导地位,那么与基准线相比,均匀优化的转子直径和高度的COE会降低3%至10%。在整个农场中,通过两个优化的转子直径和高度,可将COE降低3%至19%。对于类似的风向上升趋势,使主要风向来自西北方向,与基准线相比,均匀优化的风力涡轮机的COE降低了3%至10%。与两个基准相比,在整个风电场中优化了两个不同的涡轮机,与基准相比,COE降低了3%至17%。

著录项

  • 来源
    《Wind energy symposium 2018》|2018年|624-635|共12页
  • 会议地点 Kissimmee(US)
  • 作者单位

    Brigham Young University, Provo, Utah, 84602;

    Brigham Young University, Provo, Utah, 84602;

    National Renewable Energy Laboratory, Golden, Colorado, 80401;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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