Martin S Bruce, Matthews Marie-Noël R, MacDonnell Jeff T, Bröker Koen
JASCO Applied Sciences (Canada) Ltd., 32 Troop Avenue, Suite 202, Dartmouth, Nova Scotia B3B 1Z1, Canada.
Shell Global Solutions International B.V., Lange Kleiweg 40, 2288GK Rijswijk, The Netherlands.
J Acoust Soc Am. 2017 Dec;142(6):3331. doi: 10.1121/1.5014049.
In 2012 a seismic survey campaign involving four vessels was conducted in Baffin Bay, West Greenland. Long-distance (150 km) pre-survey acoustic modeling was performed in accordance with regulatory requirements. Four acoustic recorders, three with hydrophones at 100, 200, and 400 m depths, measured ambient and anthropogenic sound during the survey. Additional recordings without the surveys were made from September 2013 to September 2014. The results show that (1) the soundscape of Baffin Bay is typical for open ocean environments and Melville Bay's soundscape is dominated by glacial ice noise; (2) there are distinct multipath arrivals of seismic pulses 40 km from the array; (3) seismic sound levels vary little as a function of depth; (4) high fidelity pre-survey acoustic propagation modeling produced reliable results; (5) the daily SEL did not exceed regulatory thresholds and were different using Southall, Bowles, Ellison, Finneran, Gentry, Greene, Kastak, Ketten, Miller, Nachtigall, Richardson, Thomas, and Tyack [(2007) Aquat. Mamm. 33, 411-521] or NOAA weightings [National Marine Fisheries Service (2016). NOAA Technical Memorandum NMFS-OPR-55, p. 178]; (6) fluctuations of SPL with range were better described by additive models than linear regression; and (7) the survey increased the 1-min SPL by 28 dB, with most of the energy below 100 Hz; energy in the 16 000 Hz octave band was 20 dB above the ambient background 6 km from the source.
2012年,在西格陵兰巴芬湾开展了一次由四艘船只参与的地震勘探活动。根据监管要求进行了长距离(150千米)的预勘探声学建模。四台声学记录仪,其中三台在100米、200米和400米深度处装有水听器,在勘探期间测量了环境噪声和人为噪声。在2013年9月至2014年9月期间还进行了无勘探情况下的额外记录。结果表明:(1)巴芬湾的声景是开阔海洋环境的典型特征,而梅尔维尔湾的声景以冰川冰噪声为主;(2)在距阵列40千米处有明显的地震脉冲多径到达;(3)地震声级随深度变化不大;(4)高保真预勘探声学传播建模产生了可靠结果;(5)每日等效连续A声级未超过监管阈值,并且使用索索尔、鲍尔斯、埃里森、芬纳兰、金特里、格林、卡斯塔克、凯滕、米勒、纳蒂加尔、理查森、托马斯和泰克[(2007年)《水生哺乳动物》33卷,411 - 521页]或美国国家海洋和大气管理局权重[国家海洋渔业局(2016年)。美国国家海洋和大气管理局技术备忘录NMFS - OPR - 55,第178页]时有所不同;(6)声压级随距离的波动用加法模型比线性回归能更好地描述;(7)勘探使1分钟声压级增加了28分贝,大部分能量低于100赫兹;在距声源6千米处,16000赫兹倍频程带内的能量比环境背景高20分贝。