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Effects of tones associated with drilling activities on bowhead whale calling rates

机译:与钻探活动有关的声调对弓头鲸叫声率的影响

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摘要

During summer 2012 Shell performed exploratory drilling at Sivulliq, a lease holding located in the autumn migration corridor of bowhead whales (Balaena mysticetus), northwest of Camden Bay in the Beaufort Sea. The drilling operation involved a number of vessels performing various activities, such as towing the drill rig, anchor handling, and drilling. Acoustic data were collected with six arrays of directional recorders (DASARs) deployed on the seafloor over ~7 weeks in Aug–Oct. Whale calls produced within 2 km of each DASAR were identified and localized using triangulation. A “tone index” was defined to quantify the presence and amplitude of tonal sounds from industrial machinery. The presence of airgun pulses originating from distant seismic operations was also quantified. For each 10-min period at each of the 40 recorders, the number of whale calls localized was matched with the “dose” of industrial sound received, and the relationship between calling rates and industrial sound was modeled using negative binomial regression. The analysis showed that with increasing tone levels, bowhead whale calling rates initially increased, peaked, and then decreased. This dual behavioral response is similar to that described for bowhead whales and airgun pulses in earlier work. Increasing call repetition rates can be a viable strategy for combating decreased detectability of signals arising from moderate increases in background noise. Meanwhile, as noise increases, the benefits of calling may decrease because information transfer becomes increasingly error-prone, and at some point calling may no longer be worth the effort.
机译:2012年夏季,壳牌在Sivulliq进行了勘探钻探,Sivulliq是位于波弗特海卡姆登湾西北部的弓头鲸(Balaena mysticetus)秋季迁徙走廊的租赁地。钻井作业涉及许多船只,它们执行各种活动,例如拖曳钻机,锚固器和钻井。在8月至10月的大约7周内,使用六套定向记录器(DASAR)采集了海底声波,这些数据都部署在海底。在每个DASAR 2公里范围内产生的鲸鱼叫声被识别并使用三角测量法进行了本地化。定义了“音调索引”以量化来自工业机械的音调声音的存在和幅度。还量化了远距离地震操作产生的气枪脉冲的存在。对于40个记录器中的每个记录器,每10分钟的时间中,本地化的鲸鱼呼叫次数与所接收到的工业声音的“剂量”相匹配,并且使用负二项式回归对呼叫率与工业声音之间的关系进行建模。分析表明,随着声调水平的提高,弓头鲸的鸣叫率最初会升高,达到峰值,然后下降。这种双重行为反应类似于早期工作中关于弓头鲸和气枪脉冲的描述。提高呼叫重复率可能是一种可行的策略,可用来防止由于背景噪声的适度增加而引起的信号可检测性下降。同时,随着噪声的增加,呼叫的好处可能会减少,因为信息传输变得越来越容易出错,并且在某些时候呼叫可能不再值得付出努力。

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