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首页> 外文期刊>Frontiers in Marine Science >Night and Day: Diel Differences in Ship Strike Risk for Fin Whales (Balaenoptera physalus) in the California Current System
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Night and Day: Diel Differences in Ship Strike Risk for Fin Whales (Balaenoptera physalus) in the California Current System

机译:白天和黑夜:加利福尼亚现行系统中鳍鲸(Balaenoptera physalus)的船舶罢工风险的Diel差异

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Collisions with ships (ship strikes) are a pressing conservation concern for fin whales (Balaenoptera physalus) along western North America. Fin whales exhibit strong diel patterns in dive behavior, remaining near the surface for most of the night, but how this behavior affects ship-strike risk is unknown. We combined diel patterns of surface use, habitat suitability predictions, and ship traffic data to evaluate spatial and temporal trends in ship-strike risk to fin whales of the California Current System (CCS). We tested a range of surface-use scenarios and found that both increased use of the upper water column and increased ship traffic contribute to elevated ship-strike risk at night. Lengthening nights elevate risk during winter throughout the CCS, though the Southern California Bight experienced consistently high risk both day and night year-round. Within designated shipping lanes, total annual nighttime strike risk was twice daytime risk. Avoidance probability models based on ship speed were used to compare the potential efficacy of speed restrictions at various scales. Speed reductions within lanes may be an efficient remediation, but they would address only a small fraction (13%) of overall ship-strike risk. Additional speed restrictions in the approaches to lanes would more effectively reduce overall risk.
机译:与船只的碰撞(罢工)是北美西部长须鲸(Balaenoptera physalus)迫切关注的保护问题。鲸鱼在潜水行为中表现出强烈的迪尔模式,在整个夜晚的大部分时间里都停留在水面附近,但是这种行为如何影响乘船风险是未知的。我们结合了表面使用的diel模式,栖息地适宜性预测和船舶交通数据,以评估加利福尼亚海流系统(CCS)的鲸鱼罢工风险的时空趋势。我们测试了一系列的地面使用场景,发现增加上层水柱的使用量和增加的船舶通行量均会导致夜间船舶罢工的风险增加。在整个CCS中,延长夜间的夜晚会增加整个冬季的风险,尽管南加州海岸线在全年的白天和夜晚都持续出现高风险。在指定的航道内,年度夜间罢工的总风险是白天的两倍。使用基于船速的回避概率模型来比较各种规模的速度限制的潜在功效。降低车道内的速度可能是一种有效的补救措施,但它们只能解决总体船舶罢工风险的一小部分(13%)。在行车道上增加速度限制将更有效地降低总体风险。

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