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Spatial mapping of underwater noise radiated from passing vessels using automatic identification system data

机译:使用自动识别系统数据对经过船只发出的水下噪声进行空间映射

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摘要

Information regarding the spatial distribution of noise radiated by ships in specific areas is used as basic data for the protection of marine organisms and establishment of marine spatial planning. This study derived the spatial distribution of the noise radiated from ships navigating the southern region of Korea by acoustic modeling using Automatic Identification System data. The acoustic energy propagated from a ship to all spatial points in the experimental area was modeled using a ray-based model, and the noise level at a particular point was incoherently summed over all spatial points and averaged over time. By applying the acoustic modeling technique, we derived the average noise level at frequencies below 1 kHz radiated from ships in the ocean, and compared it with the acoustic data measured during the same period. Discrepancy between both results was found at frequencies below 250 Hz, and the possible cause of this discrepancy is related to the power-law model used to calculate the source level of the ship based on an empirical formula. The difference in current can be reliably reduced by applying a more accurate ship source model. (C) 2018 The Japan Society of Applied Physics
机译:有关船舶在特定区域辐射的噪声的空间分布信息被用作保护海洋生物和建立海洋空间规划的基本数据。这项研究使用自动识别系统数据通过声学建模得出了从航行于韩国南部地区的船舶辐射出的噪声的空间分布。使用基于射线的模型对从船传播到实验区域中所有空间点的声能进行建模,并将特定点的噪声水平在所有空间点上进行非相干求和并随时间取平均值。通过应用声学建模技术,我们推导出了海洋中船舶辐射出的低于1 kHz频率的平均噪声水平,并将其与同期测量的声学数据进行了比较。在低于250 Hz的频率处发现了两个结果之间的差异,并且这种差异的可能原因与功率定律模型有关,该定律模型用于根据经验公式来计算船舶的源水位。通过应用更精确的船源模型,可以可靠地减小电流差。 (C)2018日本应用物理学会

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  • 来源
    《Japanese journal of applied physics》 |2018年第7s1期|07LG07.1-07LG07.8|共8页
  • 作者单位

    Korea Inst Ocean Sci & Technol, Secur Res Ctr, Dept Maritime, Busan 49111, South Korea;

    Korea Inst Ocean Sci & Technol, Secur Res Ctr, Dept Maritime, Busan 49111, South Korea;

    Korea Inst Ocean Sci & Technol, Secur Res Ctr, Dept Maritime, Busan 49111, South Korea;

    Agcy Def Dev, Chang Won 645600, Gyeongnam, South Korea;

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