Département des Sciences Naturelles, Université du Québec en Outaouais, Ripon, QC, J0V 1V0, Canada.
Groupe de Recherche et d'Éducation sur les Mammifères Marins (GREMM), Tadoussac, QC, G0T 2A0, Canada.
Sci Rep. 2022 Jul 15;12(1):12111. doi: 10.1038/s41598-022-16060-2.
Exposure to anthropogenic noise from the commercial fleet is one of the primary constituents of the acoustic pollution perturbing the environment of aquatic life. Merchant ships (e.g. bulkers, tankers) have been the focus of numerous studies for underwater noise source level determination and modeling. This work extends pre-existing studies to the ferry ship class. Hydrophone-based measurements of the N.M. Trans-Saint-Laurent ferry near the Rivière-du-Loup harbor (Rivière-du-Loup, QC CANADA) were obtained for 186 transits between 2020 July 22th and 2020 September 5th. For each transit, monopole source levels are estimated for two (2) different modes of operation i.e., the low-speed phases of acceleration/deceleration when the ferry launches/docks at Rivière-du-Loup and the passages at quasi-operational speed at the hydrophone's closest-point-of-approach. Relative differences between the two (2) modes of operation are presented here in the low-frequency domain between 141 and 707 Hz. An average excess of 8 to 11.5 dB indicates that the ferry is likely one order of magnitude noisier, within this frequency band, during acceleration/deceleration when compared to passages at operational speed. This highlights that, in terms of marine mammal conservation, a significant reduction of the noise pollution could be achieved, for instance, by avoiding sudden speed changes in the vicinity of whales.
人为噪声的暴露是商业船队造成的主要环境噪声污染之一,干扰了水生生物的环境。商船(如散货船、油轮)一直是水下噪声源级确定和建模的众多研究的焦点。这项工作将现有的研究扩展到渡轮船级。在 2020 年 7 月 22 日至 2020 年 9 月 5 日期间,对靠近鲁珀特王子港(加拿大魁北克省鲁珀特王子港)的 N.M.跨圣劳伦斯渡轮进行了基于水听器的测量,共有 186 次过境。对于每次过境,分别估计了渡轮在两种不同操作模式下的单极源级,即渡轮在鲁珀特王子港启动/停靠时的低速加速/减速阶段,以及在水听器最近接近点的准运行速度下的通过阶段。这里在 141 至 707 Hz 的低频域中呈现了两种操作模式之间的相对差异。平均超过 8 至 11.5 dB 的差异表明,与在操作速度下通过相比,渡轮在加速/减速期间可能要嘈杂一个数量级,在该频段内。这表明,就保护海洋哺乳动物而言,可以通过避免在鲸鱼附近突然改变速度等方式,显著减少噪声污染。