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Comparison Of Pitching And Plunging Effects On The Surface Pressure Variation Of A Wind Turbine Blade Section

机译:变桨和切入对风力涡轮机叶片截面表面压力变化的影响比较

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摘要

Numerous experiments were conducted on an oscillating airfoil in a subsonic wind tunnel. The experiments involved measuring the surface pressure distribution when the model oscillated in two types of motion, pitch and plunge, at three different Reynolds numbers, 0.42, 0.63 and 0.84 million, and over a range of reduced frequencies, k = 0.03-0.09. The unsteady aerodynamic loads were calculated from the surface pressure measurements, 64 ports, along the chord for both upper and lower surfaces of the model. Particular emphasis was placed on the effects of different types of motion on the unsteady pressure distribution of the airfoil at pre-stall, near-stall and post-stall conditions. It was found that variations of the pressure distribution and aerodynamic loads with angle of attack were strongly sensitive to the displacement, oscillation frequency and mean angle of attack. The width of the hysteresis loop, position of the 'figure-8 shape' and slope of the pressure coefficient curve are influenced by both types of motion, pitch and plunge. The main difference between plunging and pitching motions is due to the presence of the pitch rate for the pitching motion case, which was absent in the plunging case. Pitch rate had the strongest influence on pressure data in the near-stall and post-stall conditions. The trend of increasing the width of the hysteresis loops of lift coefficients with changing reduced frequency was different in two motions in the pre-stall and post-stall regions. The aerodynamic damping was greater for the pitching case than for the plunging one at higher reduced frequencies due to the existence of the pitch rate in the pitching oscillation, which was reversed at lower reduced frequencies. In the near-stall region, at higher reduced frequency, the dynamic stall angle for the pitching oscillation increased while for the plunging one the effect was minimal. Increasing the oscillation amplitude was more effective for the plunging motion than for the pitching one. The effects of surface grit roughness on the pressure signature for both types of motion were also investigated. Applying the surface roughness near the leading edge affected the performance of the airfoil significantly.
机译:在亚音速风洞中的振荡翼型上进行了大量实验。实验涉及在模型以三种不同的雷诺数0.42、0.63和84万以及降低频率范围k = 0.03-0.09进行两种运动(俯仰和跳动)振动时测量表面压力分布。沿模型上,下表面沿弦的64个端口的表面压力测量值计算出了非定常的气动载荷。在失速前,近失速和失速后的情况下,应特别强调不同类型的运动对机翼非定常压力分布的影响。发现压力分布和气动载荷随迎角的变化对位移,振荡频率和平均迎角都非常敏感。磁滞回线的宽度,“ figure-8形状”的位置以及压力系数曲线的斜率受运动,俯仰和滑落两种类型的影响。俯仰运动和俯仰运动之间的主要区别是由于俯仰运动情况下存在俯仰率,而俯仰运动情况下却没有。在失速附近和失速后的情况下,变桨速率对压力数据的影响最大。在失速前和失速后区域的两个运动中,随频率变化而减小的升力系数的滞后回线宽度增加的趋势是不同的。由于在俯仰振荡中存在俯仰率,因此在俯仰情况下的空气动力学阻尼比在俯冲情况下的气动阻尼更大,因为在俯冲情况下俯冲率相反。在接近失速的区域中,在降低的频率较高时,俯仰振荡的动态失速角增加,而对于俯冲振荡,动态失速角的影响最小。相对于俯仰俯仰运动,增大振动幅度对于俯冲运动更为有效。还研究了两种运动类型的表面砂砾粗糙度对压力信号的影响。在前缘附近施加表面粗糙度会显着影响机翼的性能。

著录项

  • 来源
    《Wind Energy》 |2009年第3期|213-239|共27页
  • 作者单位

    Department of Aerospace Engineering, Sharif University of Technology, Tehran, 11365-8639, Iran;

    Department of Aerospace Engineering, Sharif University of Technology, Tehran, 11365-8639, Iran Department of Aerospace Engineering, Sharif University of Technology, Tehran 11365-8639, Iran. King's College, University of Aberdeen, UK;

    Department of Aerospace Engineering, Sharif University of Technology, Tehran, 11365-8639, Iran;

  • 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

    pitching; plunging; wind tunnel; reduced frequency; hysteresis loop; wind turbine;

    机译:俯仰;俯仰;风洞;降低频率;磁滞回线;风力发电机;
  • 入库时间 2022-08-18 00:11:52

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