Federal Maritime and Hydrographic Agency (BSH), Germany.
Federal Maritime and Hydrographic Agency (BSH), Germany.
Mar Pollut Bull. 2024 Jan;198:115891. doi: 10.1016/j.marpolbul.2023.115891. Epub 2023 Dec 14.
As awareness on the impact of anthropogenic underwater noise on marine life grows, underwater noise measurement programs are needed to determine the current status of marine areas and monitor long-term trends. The Joint Monitoring Programme for Ambient Noise in the North Sea (JOMOPANS) collaborative project was funded by the EU Interreg to collect a unique dataset of underwater noise levels at 19 sites across the North Sea, spanning many different countries and covering the period from 2019 to 2020. The ambient noise from this dataset has been characterised and compared - setting a benchmark for future measurements in the North Sea area. By identifying clusters with similar sound characteristics in three broadband frequency bands (25-160 Hz, 0.2-1.6 kHz, and 2-10 kHz), geographical areas that are similarly affected by sound have been identified. The measured underwater sound levels show a persistent and spatially uniform correlation with wind speed at high frequencies (above 1 kHz) and a correlation with the distance from ships at mid and high frequencies (between 40 Hz and 4 kHz). Correlation with ocean current velocity at low frequencies (up to 200 Hz), which are susceptible to nonacoustic contamination by flow noise, was also evaluated. These correlations were evaluated and simplified linear scaling laws for wind and current speeds were derived. The presented dataset provides a baseline for underwater noise measurements in the North Sea and shows that spatial variability of the dominant sound sources must be considered to predict the impact of noise reduction measures.
随着人们对人为水下噪声对海洋生物影响的认识不断提高,需要进行水下噪声测量计划,以确定海洋区域的现状并监测长期趋势。联合北海环境噪声监测计划(JOMOPANS)合作项目由欧盟 Interreg 资助,旨在收集北海 19 个地点的独特水下噪声水平数据集,涵盖许多不同的国家,并涵盖 2019 年至 2020 年的时间段。对该数据集的环境噪声进行了特征描述和比较,为北海地区的未来测量设定了基准。通过在三个宽带频段(25-160 Hz、0.2-1.6 kHz 和 2-10 kHz)中识别具有相似声音特征的聚类,确定了受声音影响相似的地理区域。测量的水下声级在高频(高于 1 kHz)上与风速具有持续且空间均匀的相关性,在中频和高频(40 Hz 至 4 kHz 之间)上与船舶距离具有相关性。还评估了与低频(高达 200 Hz)海洋流速的相关性,低频流速容易受到流噪声的非声污染。对这些相关性进行了评估,并推导出风速和水流速度的简化线性比例定律。所提供的数据集为北海水下噪声测量提供了基线,并表明必须考虑主要声源的空间变异性,以预测噪声降低措施的影响。