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Wind turbine noise propagation over flat ground: Measurements and predictions

机译:风力涡轮机噪声在平坦地面上的传播:测量和预测

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摘要

Noise from wind turbines is of concern in the planning process of new wind farms, and accurate estimations of immission noise levels at residents nearby are required. Sound propagation from wind turbine to receiver could be modelled by a simplified standard model assuming constant meteorological conditions, by an engineering method taking atmospheric and ground propagation conditions into account, or by a more exact model. Epidemiological studies have found a higher frequency of annoyance due to wind turbine noise than to other community noise sources at equal noise levels, indicating that the often used simplified model is not sufficient. This paper evaluates the variation of immission sound levels under the influence of meteorological variation and explores if the prediction of levels could be improved by taking the effect of wind speed on sound propagation into account. Long-term sound recordings and measurements at a distance of 530 m from a wind turbine show that the simplified standard model predicts the average sound pressure levels satisfactorily under downwind conditions, and that a more complex propagation model might not be needed for wind turbine noise at a relatively short distance. Large variations of sound immission levels at the same wind speed were however present. Statistical analysis revealed that these variations were influenced by meteorological parameters, such as temperature, static pressure and deviation from ideal downwind direction. The overall results indicate that meteorological factors influence the noise generated by the wind turbine rather than the sound propagation.
机译:在新风电场的规划过程中,来自风力涡轮机的噪声令人担忧,因此需要准确估算附近居民的排放噪声水平。从风力涡轮机到接收器的声音传播可以通过假设气象条件不变的简化标准模型,考虑到大气和地面传播条件的工程方法或更精确的模型来建模。流行病学研究发现,在噪声水平相同的情况下,由风力涡轮机噪声引起的烦恼频率要比由其他社区噪声源引起的烦恼更高,这表明经常使用的简化模型是不够的。本文评估了在气象变化的影响下发射声级的变化,并探讨了通过考虑风速对声传播的影响是否可以改善声级的预测。距风力涡轮机530 m处的长期声音记录和测量表明,简化的标准模型可以预测顺风条件下的平均声压水平,并且对于风力涡轮机噪声,可能不需要更复杂的传播模型。相对较短的距离。然而,在相同的风速下存在着较大的声音发射水平变化。统计分析表明,这些变化受气象参数的影响,例如温度,静压和与理想顺风方向的偏差。总体结果表明,气象因素影响风力涡轮机产生的噪声,而不是声音传播。

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