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海面波浪谱对深海低频环境噪声的影响
引用本文:徐东,李风华,郭永刚,王元.海面波浪谱对深海低频环境噪声的影响[J].声学学报,2018,43(2):137-144.
作者姓名:徐东  李风华  郭永刚  王元
作者单位:1. 中国科学院声学研究所 声场声信息国家重点实验室 北京 100190;
基金项目:中国科学院前沿科学重点研究项目(QYZDY-SSW-SLH005)资助国家自然科学基金项目(11125420,11434012,41561144006)
摘    要:提出了一种适用于深海低频环境噪声的波浪谱,通过声压谱和波浪谱的理论关系,分析了深海低频噪声在百赫兹以下的谱特征,解释了不同频段噪声谱的主要产生机理。将深海传播条件下海面波浪谱与海面风速相结合,利用波浪发声理论得到一种低频海洋环境噪声理论表示方法。仿真结果表明,波浪谱决定着辐射噪声谱的强度和斜率,本模型得到的理论噪声谱可以对低频海洋环境噪声进行预报。2016年的深海实验观测数据分析显示,统计的环境噪声谱级在1 Hz至100 Hz频段范围内大于70 dB,并且噪声谱在低频段呈倒“N”型,在34 Hz处为噪声谱的谷值,噪声级为70 dB,在50 Hz处为噪声谱的峰值,噪声级为92 dB,通过理论计算和实验对比,相关系数为0.95,理论结果和实验测量对比结果符合较好。 

关 键 词:噪声    波浪谱    低频    深海
收稿时间:2017-04-13

The effects of the ocean surface wave spectrum on low frequency ambient noise in deep water
Institution:1. State Key Laboratory of Acoustics, Institute of Acoustics, Chinese Academy of Sciences Beijing 100190;2. University of Chinese Academy of Sciences Beijing 100190;3. State Key Laboratory of Petroleum Resources Research, Institute of Geology and Geophysics, Chinese Academy of Sciences Beijing 100190
Abstract:An ocean surface wave spectrum which is used for low frequency ambient noise in deep water is proposed.It explains the mechanism of low frequency ambient noise from the theoretical relation between the spectrum of sound pressure and wave. Combining the surface wave spectrum and local wind speed in deep water, a theoretical expression of low frequency ambient noise is obtained with wave generated noise theory. Simulation results show that wave spectrum is crucial to the intensity and the spectral slope of radiated noise spectrum, and the theoretical noise spectrum could be used to predict the ambient noise in deep water. The predicting results are verified through the experimental data recorded by an ocean bottom seismometer that was deployed in deep water in April 2016. It is observed that the statistical noise levels from the experimental data for frequencies from 1 Hz to 100 Hz are larger than 70 dB, and the low frequency ambient noise spectrum follows the shape of inverted "N", the valley of noise spectrum is at 3-4 Hz, and the noise level is 70 dB. The peak of noise spectrum is at 50 Hz, and the noise level is 92 dB. The correlation parameter is 0.95 between the model spectrum and measured data. 
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