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Simultaneous tracking of blue whales and large ships demonstrates limited behavioral responses for avoiding collision

机译:同时跟踪蓝鲸和大型船舶证明了避免碰撞的有限行为响应

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Collisions between ships and whales are reported throughout the world's oceans. For some endangered whale populations, ship strikes are a major threat to survival and recovery. Factors known to affect the incidence and severity of collisions include spatial co-occurrence of ships and whales, hydrodynamic forces around ships, and ship speed. Less understood and likely key to understanding differences in interactions between whales and ships is whale behavior in the presence of ships. In commercial shipping lanes off southern California, we simultaneously recorded blue whale behavior and commercial ship movement. A total of 20 ship passages with 9 individual whales were observed at distances ranging from 60 to 3600 m. We documented a dive response (i.e. shallow dive during surface period) of blue whales in the path of oncoming ships in 55% of the ship passages, but found no evidence for lateral avoidance. Descent rate, duration, and maximum depth of the observed response dives were similar to whale behavior immediately after suction-cup tag deployments. These behavioral data were combined with ship hydrodynamic forces to evaluate the maximum ship speed that would allow a whale time to avoid an oncoming ship. Our analysis suggests that the ability of blue whales to avoid ships is limited to relatively slow descents, with no horizontal movements away from a ship. We posit that this constrained response repertoire would limit their ability to adjust their response behavior to different ship speeds. This is likely a factor in making blue whales, and perhaps other large whales, more vulnerable to ship strikes.
机译:据报道,全世界鲸鱼与船只之间的碰撞。对于一些濒临灭绝的鲸鱼种群,罢工是对生存和恢复的重大威胁。已知影响碰撞发生和严重程度的因素包括船舶和鲸鱼的空间共现,船舶周围的水动力以及船舶速度。理解鲸鱼与船舶之间相互作用的差异的了解较少,可能的关键是存在船舶时的鲸鱼行为。在南加州以外的商业运输通道中,我们同时记录了蓝鲸的行为和商业船舶的移动。在60至3600 m的距离内,共观察到20条带有9条鲸鱼的船舶通道。我们记录了蓝鲸在55%的船舶通道中对驶来的船舶路径中的蓝鲸的潜水响应(即在水面期间的浅潜),但没有发现横向避让的证据。观察到的潜水响应的下降率,持续时间和最大深度类似于吸盘标签部署后的鲸鱼行为。这些行为数据与船舶流体动力相结合,以评估最大航速,这将允许鲸鱼时间避开驶来的船舶。我们的分析表明,蓝鲸避开船只的能力仅限于相对较慢的下降,并且没有离开船只的水平运动。我们认为,这种受限的响应方式会限制他们根据不同的船速调整响应行为的能力。这可能是使蓝鲸以及其他大型鲸鱼更容易受到船舶打击的一个因素。

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