Annoyance and Partial Masking of Wind Turbine Noise from Ambient Sources

Q1 Arts and Humanities
Anders Johansson, Karl Bohlin, J. Alvarsson
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引用次数: 1

Abstract

This paper investigates noise annoyance from wind turbines of different sizes and in different acoustic surroundings. A listening test was conducted where wind turbine noises were rated alone and together with background sounds from a deciduous forest, a busy city and road traffic. A magnitude production procedure was implemented which showed high correlation between repeated measurements and the results were analysed using A-weighted sound levels, signal-to-noise ratios and time varying loudness and partial loudness. Ratings for wind turbine sound heard alone showed no coherent statistically significant differences between wind turbine types, neither for A-weighted sound levels nor loudness. The masking test indicate that road traffic noise is a superior masker compared to forest sound. However, these effects where only statistically significant at low sound levels, below the range 35–45 dB(A), where noise guidelines for wind turbine noise usually are stipulated.
环境噪声源对风力发电机噪声的干扰和部分掩蔽
本文研究了不同尺寸的风力机在不同声环境下的噪声干扰。在一项听力测试中,风力涡轮机的噪音被单独评估,并与落叶森林、繁忙的城市和道路交通的背景声音一起评估。执行了一个震级生成程序,该程序显示了重复测量之间的高度相关性,并使用A加权声级、信噪比、时变响度和部分响度分析结果。单独的风力涡轮机声音评级显示,不同类型的风力涡轮机之间没有明显的统计差异,无论是a加权声音级别还是响度。掩蔽试验表明,道路交通噪声的掩蔽效果优于森林声。然而,这些影响只有在低声级(低于35-45 dB(A))的范围内才具有统计学意义,而风力涡轮机噪音的噪声指南通常是规定的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.60
自引率
0.00%
发文量
0
审稿时长
6.8 months
期刊介绍: Cessation. Acta Acustica united with Acustica (Acta Acust united Ac), was published together with the European Acoustics Association (EAA). It was an international, peer-reviewed journal on acoustics. It published original articles on all subjects in the field of acoustics, such as • General Linear Acoustics, • Nonlinear Acoustics, Macrosonics, • Aeroacoustics, • Atmospheric Sound, • Underwater Sound, • Ultrasonics, • Physical Acoustics, • Structural Acoustics, • Noise Control, • Active Control, • Environmental Noise, • Building Acoustics, • Room Acoustics, • Acoustic Materials and Metamaterials, • Audio Signal Processing and Transducers, • Computational and Numerical Acoustics, • Hearing, Audiology and Psychoacoustics, • Speech, • Musical Acoustics, • Virtual Acoustics, • Auditory Quality of Systems, • Animal Bioacoustics, • History of Acoustics.
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