首页> 外文期刊>AIP Advances >Prediction and analysis of infra and low-frequency noise of upwind horizontal axis wind turbine using statistical wind speed model
【24h】

Prediction and analysis of infra and low-frequency noise of upwind horizontal axis wind turbine using statistical wind speed model

机译:基于统计风速模型的上风向水平轴风力发电机低频和低频噪声预测与分析

获取原文
           

摘要

Despite increasing concern about low-frequency noise of modern large horizontal-axis wind turbines (HAWTs), few studies have focused on its origin or its prediction methods. In this paper, infra- and low-frequency (the ILF) wind turbine noise are closely examined and an efficient method is developed for its prediction. Although most previous studies have assumed that the ILF noise consists primarily of blade passing frequency (BPF) noise components, these tonal noise components are seldom identified in the measured noise spectrum, except for the case of downwind wind turbines. In reality, since modern HAWTs are very large, during rotation, a single blade of the turbine experiences inflow with variation in wind speed in time as well as in space, breaking periodic perturbations of the BPF. Consequently, this transforms acoustic contributions at the BPF harmonics into broadband noise components. In this study, the ILF noise of wind turbines is predicted by combining Lowson’s acoustic analogy with the stochastic wind model, which is employed to reproduce realistic wind speed conditions. In order to predict the effects of these wind conditions on pressure variation on the blade surface, unsteadiness in the incident wind speed is incorporated into the XFOIL code by varying incident flow velocities on each blade section, which depend on the azimuthal locations of the rotating blade. The calculated surface pressure distribution is subsequently used to predict acoustic pressure at an observing location by using Lowson’s analogy. These predictions are compared with measured data, which ensures that the present method can reproduce the broadband characteristics of the measured low-frequency noise spectrum. Further investigations are carried out to characterize the IFL noise in terms of pressure loading on blade surface, narrow-band noise spectrum and noise maps around the turbine.
机译:尽管人们越来越关注现代大型水平轴风力涡轮机(HAWT)的低频噪声,但很少有研究关注其起源或预测方法。在本文中,对低频和低频(ILF)风力涡轮机噪声进行了仔细检查,并开发了一种有效的预测方法。尽管大多数以前的研究都假定ILF噪声主要由叶片通过频率(BPF)噪声成分组成,但是在顺风风力发电机组中,很少在测量的噪声频谱中识别出这些音调噪声成分。实际上,由于现代HAWT非常大,在旋转过程中,涡轮机的单个叶片会随时间和空间的风速变化而流入,从而破坏了BPF的周期性扰动。因此,这会将BPF谐波处的声学贡献转换为宽带噪声分量。在这项研究中,通过将Lowson的声学类比与随机风模型相结合来预测风力涡轮机的ILF噪声,该模型用于再现现实的风速条件。为了预测这些风况对叶片表面压力变化的影响,通过改变每个叶片部分的入射流速(取决于旋转叶片的方位角位置),将入射风速的不稳定性纳入XFOIL代码中。随后,通过使用Lowson的类比,计算出的表面压力分布将用于预测观测位置的声压。将这些预测与测量的数据进行比较,以确保本方法可以再现测量的低频噪声频谱的宽带特性。进行了进一步的研究,以根据叶片表面的压力负荷,窄带噪声谱和涡轮机周围的噪声图来表征IFL噪声。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号