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Wind tunnel study of the wind turbine interaction with a boundary-layer flow: Upwind region, turbine performance, and wake region

机译:风力隧道与边界层流动的冲动涡轮机相互作用:逆风区,涡轮性能和唤醒区域

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摘要

Comprehensive wind tunnel experiments were carried out to study the interaction of a turbulent boundary layer with a wind turbine operating under different tip-speed ratios and yaw angles. Force and power measurements were performed to characterize the variation of thrust force (both magnitude and direction) and generated power of the wind turbine under different operating conditions. Moreover, flow measurements, collected using high-resolution particle-image velocimetry as well as hot-wire anemometry, were employed to systematically study the flow in the upwind, near-wake, and far-wake regions. These measurements provide new insights into the effect of turbine operating conditions on flowcharacteristics in these regions. For the upwind region, the results show a strong lateral asymmetry under yawed conditions. For the near-wake region, the evolution of tip and root vortices was studied with the use of both instantaneous and phase-averaged vorticity fields. The results suggest that the vortex breakdown position cannot be determined based on phase-averaged statistics, particularly for tip vortices under turbulent inflow conditions. Moreover, the measurements in the near-wake region indicate a complex velocity distribution with a speed-up region in the wake center, especially for higher tip-speed ratios. In order to elucidate the meandering tendency of far wakes, particular focus was placed on studying the characteristics of large turbulent structures in the boundary layer and their interaction with wind turbines. Although these structures are elongated in the streamwise direction, their cross sections are found to have a size comparable to the rotor area, so that they can be affected by the presence of the turbine. In addition, the study of spatial coherence in turbine wakes reveals that any statistics based on streamwise velocity fluctuations cannot provide reliable information about the size of large turbulent structures in turbine wakes due to the effect of wake meandering. The results also suggest that the magnitude of wake meandering does not depend on turbine-operating conditions. Finally, the suitability of the proper orthogonal decomposition for studying wake meandering is examined.
机译:进行综合风洞实验,以研究湍流边界层与在不同尖端速度比和偏航角下操作的风力涡轮机的相互作用。执行力和功率测量以表征推力(幅度和方向)的变化,并在不同的操作条件下产生风力涡轮机的功率。此外,使用使用高分辨率粒子图像测速基以及热线风速测量来进行流量测量,用于系统地研究逆风,近唤醒和远唤醒区域中的流动。这些测量提供了新的洞察力涡轮机操作条件对这些区域的流动性的影响。对于挤压区域,结果表明,在打开条件下具有强烈的横向不对称性。对于近唤醒区域,使用瞬时和相平均涡流场研究了尖端和根涡流的演变。结果表明,涡流击穿位置不能基于相平均统计来确定,特别是对于湍流流入条件下的尖端涡流。此外,近唤醒区域中的测量指示具有唤醒中心中的加速区域的复速分布,特别是对于更高的尖端速度比。为了阐明令人醒来的蜿蜒倾向,对研究边界层中大型湍流结构的特性及其与风力涡轮机的相互作用进行了特别的重点。尽管这些结构在流动方向上伸长,但是它们的横截面被发现具有与转子区域相当的尺寸,使得它们可以受到涡轮机的存在影响。此外,涡轮机唤醒的空间相干性研究表明,由于曲折曲折的效果,基于流速速度波动的任何统计数据都不能提供关于涡轮机唤醒的大型湍流结构的尺寸的可靠信息。结果还表明,摇摆曲折的大小不依赖于涡轮机操作条件。最后,检查了适当正交分解用于学习唤醒蜿蜒的适用性。

著录项

  • 来源
    《Physics of fluids》 |2017年第6期|共18页
  • 作者

    Bastankhah M.; Porte-Agel F.;

  • 作者单位

    Ecole Polytech Fed Lausanne Wind Engn &

    Renewable Energy Lab WIRE CH-1015 Lausanne Switzerland;

    Ecole Polytech Fed Lausanne Wind Engn &

    Renewable Energy Lab WIRE CH-1015 Lausanne Switzerland;

  • 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

  • 入库时间 2022-08-19 18:20:59

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