Shajahan Najeem, Halliday William D, Dawson Jackie, Maksagak Ivor, Weese Kyle, Melling Humfrey, Niemi Andrea, Vagle Svein, Williams Bill, Insley Stephen J
Wildlife Conservation Society Canada, 169 Titanium Way, Whitehorse, Yukon Territory, Y1A 0E9, Canada.
School of Earth and Ocean Sciences, University of Victoria, Victoria, British Columbia, V8P 3E6, Canada.
J Acoust Soc Am. 2024 Jun 1;155(6):3807-3821. doi: 10.1121/10.0026361.
Increased ship traffic due to climate change increases underwater noise in the Arctic. Therefore, accurate measurements of underwater radiated noise are necessary to map marine sound and quantify shipping's impact on the Arctic ecosystem. This paper presents a method to calculate opportunistic source levels (SLs) using passive acoustic data collected at six locations in the Western Canadian Arctic from 2018 to 2022. Based on Automatic Identification System data, acoustic data, and a hybrid sound propagation model, the SLs of individual ships were calculated within a 5 km radius of each measurement site. A total of 66 measurements were obtained from 11 unique vessels, with multiple measurements from the same vessel type contributing more SLs. For vessels with propeller cavitation, measured SLs correlated positively with vessel parameters, such as speed and length. SL and speed did not correlate well for vessels without propeller cavitation. The JOMOPANS-ECHO SL model produced good agreement with measured SL for certain ship types (container ships, a tanker, and a passenger vessel). However, significant differences between measurement and model are evident for certain polar-class ships that travel in the Arctic, indicating that more controlled SL measurements are needed.
气候变化导致船舶交通增加,进而加大了北极地区的水下噪声。因此,准确测量水下辐射噪声对于绘制海洋声音地图以及量化航运对北极生态系统的影响至关重要。本文介绍了一种利用2018年至2022年在加拿大北极西部地区六个地点收集的被动声学数据来计算机会声源级(SL)的方法。基于自动识别系统数据、声学数据以及混合声音传播模型,在每个测量站点半径5公里范围内计算了各艘船舶的声源级。从11艘不同的船舶上总共获得了66次测量数据,同一船舶类型的多次测量提供了更多的声源级数据。对于存在螺旋桨空化现象的船舶,测量得到的声源级与船舶参数(如速度和长度)呈正相关。对于不存在螺旋桨空化现象的船舶,声源级与速度的相关性不佳。JOMOPANS - ECHO声源级模型与某些船舶类型(集装箱船、一艘油轮和一艘客船)的测量声源级吻合良好。然而,对于某些在北极航行的极地级船舶,测量值与模型之间存在明显差异,这表明需要进行更多可控的声源级测量。