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对一台3.6兆瓦单桩式风力涡轮机辐射的水下声音进行测量与特性描述。

Measurement and characterisation of radiated underwater sound from a 3.6 MW monopile wind turbine.

作者信息

Pangerc Tanja, Theobald Peter D, Wang Lian S, Robinson Stephen P, Lepper Paul A

机构信息

Acoustics and Ionising Radiation, National Physical Laboratory, Hampton Road, Teddington TW11 0LW, United Kingdom.

Department of Electronic and Electrical Engineering, Loughborough University, Loughborough, Leicestershire LE11 3TU, United Kingdom.

出版信息

J Acoust Soc Am. 2016 Oct;140(4):2913. doi: 10.1121/1.4964824.

Abstract

This paper describes underwater sound pressure measurements obtained in close proximity (∼50 m) to two individual wind turbines, over a 21-day period, capturing the full range of turbine operating conditions. The sound radiated into the water was characterised by a number of tonal components, which are thought to primarily originate from the gearbox for the bandwidth measured. The main signal associated with the turbine operation had a mean-square sound pressure spectral density level which peaked at 126 dB re 1 μPa Hz at 162 Hz. Other tonal components were also present, notably at frequencies between about 20 and 330 Hz, albeit at lower amplitudes. The measured sound characteristics, both in terms of frequency and amplitude, were shown to vary with wind speed. The sound pressure level increased with wind speed up to an average value of 128 dB re 1 μPa at a wind speed of about 10 ms, and then showed a general decrease. Overall, differences in the mean-square sound pressure spectral density level of over 20 dB were observed across the operational envelope of the turbine.

摘要

本文描述了在21天的时间里,在距离两台单独的风力涡轮机约50米的近距离处进行的水下声压测量,涵盖了涡轮机的所有运行工况。辐射到水中的声音具有多个音调成分,据认为这些成分主要源于所测带宽内的齿轮箱。与涡轮机运行相关的主要信号的均方声压谱密度水平在162赫兹时达到峰值,为126分贝(相对于1微帕·赫兹)。还存在其他音调成分,特别是在约20至330赫兹之间的频率处,尽管幅度较低。测量到的声音特性,无论是频率还是幅度,都随风速而变化。声压级随风速增加,在风速约为10米/秒时达到平均128分贝(相对于1微帕),然后总体呈下降趋势。总体而言,在涡轮机的整个运行范围内,观察到均方声压谱密度水平的差异超过20分贝。

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