首页> 外文期刊>The Journal of Experimental Biology >Lack of behavioural responses of humpback whales (Megaptera novaeangliae) indicate limited effectiveness of sonar mitigation
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Lack of behavioural responses of humpback whales (Megaptera novaeangliae) indicate limited effectiveness of sonar mitigation

机译:驼背鲸缺乏行为响应(兆瓦诺瓦利亚岛)表示声纳缓解的有限效力

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摘要

Exposure to underwater sound can cause permanent hearing loss and other physiological effects in marine animals. To reduce this risk, naval sonars are sometimes gradually increased in intensity at the start of transmission ('ramp-up'). Here, we conducted experiments in which tagged humpback whales were approached with a ship to test whether a sonar operation preceded by ramp-up reduced three risk indicators - maximum sound pressure level (SPLmax), cumulative sound exposure level (SELcum) and minimum source-whale range (R-min) - compared with a sonar operation not preceded by ramp-up. Whales were subject to one no-sonar control session and either two successive ramp-up sessions (RampUp1, RampUp2) or a ramp-up session (RampUp1) and a full-power session (FullPower). Full-power sessions were conducted only twice; for other whales we used acoustic modelling that assumed transmission of the full-power sequence during their no-sonar control. Averaged over all whales, risk indicators in RampUp1 (n = 11) differed significantly from those in FullPower (n = 12) by -3.0 dB (SPLmax), -2.0 dB (SELcum) and +168 m (R-min), but not significantly from those in RampUp2 (n = 9). Only five whales in RampUp1, four whales in RampUp2 and none in FullPower or control sessions avoided the sound source. For RampUp1, we found statistically significant differences in risk indicators between whales that avoided the sonar and whales that did not: -4.7 dB (SPLmax), -3.4 dB (SELcum) and +291 m (R-min). In contrast, for RampUp2, these differences were smaller and not significant. This study suggests that sonar ramp-up has a positive but limited mitigative effect for humpback whales overall, but that ramp-up can reduce the risk of harm more effectively in situations when animals are more responsive and likely to avoid the sonar, e.g. owing to novelty of the stimulus, when they are in the path of an approaching sonar ship.
机译:暴露在水下声音可能导致海洋动物中的永久性听力损失和其他生理效果。为了减少这种风险,海军索纳尔有时会在变速器开始时逐渐增加强度('斜坡')。在这里,我们进行了实验,其中将标记的驼背鲸与船舶接近船舶,以测试先升压前面的声纳操作是否减少了三个风险指标 - 最大声压级(SPLMAX),累积声曝光水平(SELCUM)和最小源 - 鲸鱼范围(R-min) - 与不需要的SonaR操作相比,不需要斜坡。鲸鱼受到一个No-Sonar控制会话的影响,两个连续的斜坡会话(rampup1,rampup2)或斜坡会话(rampup1)和全功率会话(fullpower)。全权力会话仅进行两次;对于其他鲸鱼,我们使用了声学建模,在其No-Sonar控制期间假设全功率序列的传输。对所有鲸鱼的平均值,rampup1(n = 11)中的风险指标从upperpower(n = 12)的那些差异 - 3.0 db(splmax),-2.0 db(selcum)和+168 m(r-min),但是没有显着从rampup2(n = 9)中的显着。在rampup1中只有五个鲸鱼,rampup2中的四个鲸鱼,避免了rumperpower或控制会话中的避免了声源。对于RAMPUP1,我们发现鲸鱼之间的风险指标的统计学意义差异避免了没有:-4.7dB(SPLMAX),-3.4dB(SELCUM)和+291M(R-MIN)的SONAL和鲸鱼。相比之下,对于斜坡2,这些差异较小,而不是显着的。本研究表明,Sonar Ramp-Up对驼背鲸总体而言,但随着动物更响应并且可能避免声纳的情况,升压可以更有效地降低伤害的风险。由于刺激新颖,当他们在接近的声纳船的道路上时。

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