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台风期间南海北部岛礁及下坡海底对水下噪声的影响研究
引用本文:文洪涛,王宁,杨燕明,阮海林,许德伟. 台风期间南海北部岛礁及下坡海底对水下噪声的影响研究[J]. 海洋学报(英文版), 2020, 42(5): 87-95. DOI: 10.1007/s13131-020-1566-4
作者姓名:文洪涛  王宁  杨燕明  阮海林  许德伟
作者单位:中国海洋大学信息科学与工程学院, 青岛, 266100;自然资源部第三海洋研究所海洋声学与遥感实验室, 厦门, 361005
摘    要:The correlation of ambient noise with wind speed, and the depth dependence of ambient noise are both investigated, where the ocean noise data were recorded by a vertical line array in the northern South China Sea. It is shown that the correlation coefficients increase with increasing hydrophone depth during typhoon periods when the frequency ≥ 250 Hz, which opposes the generally accepted knowledge that the correlation coefficients of noise level and wind speed decrease with increasing depth during non-typhoon periods. Particularly at frequencies of 250 Hz, 315 Hz and 400 Hz, the correlation coefficients increase by more than 0.05 at depths ranging from 155 m to 875 m. At the three frequencies, the average noise levels also increase with increasing depth during typhoon periods. It is suggested that these differences are attributed to the wind-generated noise in shallow waters and the effect of "downslope enhancement" to sound propagation. During typhoon periods, the surf breaking and surf beat upon the shores and reefs are strengthened, and the source levels are increased. The wind-generated noise in shallow waters interacts with the downslope sea floor, with the noise-depth distribution changed by a "downslope enhancement" effect promoting noise propagation.

关 键 词:水下噪声  台风  下坡增强效应  南海北部
收稿时间:2019-03-28

Effects of islands and downslope seafloors on underwater noise in the northern South China Sea during a typhoon
Wen Hongtao,Wang Ning,Yang Yanming,Ruan Hailin,Xu Dewei. Effects of islands and downslope seafloors on underwater noise in the northern South China Sea during a typhoon[J]. Acta Oceanologica Sinica, 2020, 42(5): 87-95. DOI: 10.1007/s13131-020-1566-4
Authors:Wen Hongtao  Wang Ning  Yang Yanming  Ruan Hailin  Xu Dewei
Affiliation:1.College of Information Science and Technology, Ocean University of China, Qingdao 266100, China2.Third Institute of Oceanography, Ministry of Natural Resources, Xiamen 361005, China
Abstract:The correlation of ambient noise with wind speed, and the depth dependence of ambient noise are both investigated, where the ocean noise data were recorded by a vertical line array in the northern South China Sea. It is shown that the correlation coefficients increase with increasing hydrophone depth during typhoon periods when the frequency ≥ 250 Hz, which opposes the generally accepted knowledge that the correlation coefficients of noise level and wind speed decrease with increasing depth during non-typhoon periods. Particularly at frequencies of 250 Hz, 315 Hz and 400 Hz, the correlation coefficients increase by more than 0.05 at depths ranging from 155 m to 875 m. At the three frequencies, the average noise levels also increase with increasing depth during typhoon periods. It is suggested that these differences are attributed to the wind-generated noise in shallow waters and the effect of “downslope enhancement” to sound propagation. During typhoon periods, the surf breaking and surf beat upon the shores and reefs are strengthened, and the source levels are increased. The wind-generated noise in shallow waters interacts with the downslope sea floor, with the noise-depth distribution changed by a “downslope enhancement” effect promoting noise propagation.
Keywords:underwater noise  typhoon  downslope enhancement  the northern South China Sea
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