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Effect of wind turbine nacelle on turbine wake dynamics in large wind farms

机译:风力涡轮机机舱对大型风电场涡轮机唤醒动力的影响

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摘要

Wake meandering, a phenomenon of large-scale lateral oscillation of the wake, has significant effects on the velocity deficit and turbulence intensities in wind turbine wakes. Previous studies of a single turbine (Kang et al., J. Fluid. Mech., vol. 774, 2014, pp. 374-403; Foti et al., Phys. Rev. Fluids, vol. 1 (4), 2016, 044407) have shown that the turbine nacelle induces large-scale coherent structures in the near field that can have a significant effect on wake meandering. However, whether nacelle-induced coherent structures at the turbine scale impact the emergent turbine wake dynamics at the wind farm scale is still an open question of both fundamental and practical significance. We take on this question by carrying out large-eddy simulation of atmospheric turbulent flow over the Horns Rev wind farm using actuator surface parameterisations of the turbines without and with the turbine nacelle taken into account. While the computed mean turbine power output and the mean velocity field away from the nacelle wake are similar for both cases, considerable differences are found in the turbine power fluctuations and turbulence intensities. Furthermore, wake meandering amplitude and area defined by wake meanders, which indicates the turbine wake unsteadiness, are larger for the simulations with the turbine nacelle. The wake influenced area computed from the velocity deficit profiles, which describes the spanwise extent of the turbine wakes, and the spanwise growth rate, on the other hand, are smaller for some rows in the simulation with the nacelle model. Our work shows that incorporating the nacelle model in wind farm scale simulations is critical for accurate predictions of quantities that affect the wind farm levelised cost of energy, such as the dynamics of wake meandering and the dynamic loads on downwind turbines.
机译:唤醒曲折,唤醒大规模横向振荡的现象,对风力涡轮机唤醒的速度缺陷和湍流强度具有显着影响。以前的一个涡轮机(Kang等,J. Fluid.Mech。,Vol.774,2014,PP。374-403; Foti等,Phy.Reg.液体,Vol.1(4),2016 ,044407)已经表明涡轮机舱在近场中引起大规模相干结构,这对曲折唤醒可能具有显着影响。然而,无论是机舱诱导的涡轮机尺度的相干结构是否会影响风电场规模的紧急涡轮唤醒动态仍然是一个开放的问题,其基本和实际意义。我们通过使用涡轮机的致动器表面参数来执行大气湍流的大型湍流流动的大型涡流仿真来承担这个问题,没有考虑到涡轮机的涡轮机表面。虽然计算的平均涡轮功率输出和远离机舱唤醒的平均速度场类似于这两种情况,但在涡轮机动力波动和湍流强度中发现了相当大的差异。此外,由旋锯蜿蜒的旋风幅度和面积表示涡轮机唤醒不稳定,对于涡轮机舱的模拟较大。从速度缺陷型材计算的唤醒影响区域,该区域描述了涡轮机唤醒的南瓜,以及翼展的生长速率,另一方面,对于使用机舱模型的模拟中的一些行较小。我们的工作表明,在风电场规模模拟中纳入机舱模型对于影响风电场的量化能量成本的准确预测是至关重要的,例如唤醒蜿蜒的动态和下风涡轮机上的动态负载。

著录项

  • 来源
    《Journal of Fluid Mechanics》 |2019年第2019期|共26页
  • 作者单位

    Univ Michigan Dept Aerosp Engn Ann Arbor MI 48109 USA;

    SUNY Stony Brook Coll Engn &

    Appl Sci Dept Mech Engn Stony Brook NY 11794 USA;

    Univ Minnesota Dept Mech Engn St Anthony Falls Lab 111 Church St SE Minneapolis MN 55455 USA;

    SUNY Stony Brook Coll Engn &

    Appl Sci Dept Civil Engn Stony Brook NY 11794 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 流体力学;
  • 关键词

    wakes;

    机译:唤醒;
  • 入库时间 2022-08-19 19:34:08

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