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首页> 外文期刊>The Journal of Applied Ecology >Avoidance of wind farms by harbour seals is limited to pile driving activities
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Avoidance of wind farms by harbour seals is limited to pile driving activities

机译:避免风力发电场的港海豹限于打桩的活动

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As part of global efforts to reduce dependence on carbon-based energy sources there has been a rapid increase in the installation of renewable energy devices. The installation and operation of these devices can result in conflicts with wildlife. In the marine environment, mammals may avoid wind farms that are under construction or operating. Such avoidance may lead to more time spent travelling or displacement from key habitats. A paucity of data on at-sea movements of marine mammals around wind farms limits our understanding of the nature of their potential impacts. Here, we present the results of a telemetry study on harbour seals Phoca vitulina in The Wash, south-east England, an area where wind farms are being constructed using impact pile driving. We investigated whether seals avoid wind farms during operation, construction in its entirety, or during piling activity. The study was carried out using historical telemetry data collected prior to any wind farm development and telemetry data collected in 2012 during the construction of one wind farm and the operation of another. Within an operational wind farm, there was a close-to-significant increase in seal usage compared to prior to wind farm development. However, the wind farm was at the edge of a large area of increased usage, so the presence of the wind farm was unlikely to be the cause. There was no significant displacement during construction as a whole. However, during piling, seal usage (abundance) was significantly reduced up to 25km from the piling activity; within 25km of the centre of the wind farm, there was a 19 to 83% (95% confidence intervals) decrease in usage compared to during breaks in piling, equating to a mean estimated displacement of 440 individuals. This amounts to significant displacement starting from predicted received levels of between 166 and 178dB re 1Pa((p-p)). Displacement was limited to piling activity; within 2h of cessation of pile driving, seals were distributed as per the non-piling scenario.Synthesis and applications. Our spatial and temporal quantification of avoidance of wind farms by harbour seals is critical to reduce uncertainty and increase robustness in environmental impact assessments of future developments. Specifically, the results will allow policymakers to produce industry guidance on the likelihood of displacement of seals in response to pile driving; the relationship between sound levels and avoidance rates; and the duration of any avoidance, thus allowing far more accurate environmental assessments to be carried out during the consenting process. Further, our results can be used to inform mitigation strategies in terms of both the sound levels likely to cause displacement and what temporal patterns of piling would minimize the magnitude of the energetic impacts of displacement.
机译:作为全球努力减少依赖的一部分碳基能源了快速的安装增加可再生能源设备。这些设备可能会导致冲突野生动物。避免在建或风力发电场操作。在旅行或位移的关键栖息地。风力发电场限制了我们周围的海洋哺乳动物对其潜在的本质的理解影响。遥测技术研究港口海豹Phoca vitulina洗,英格兰东南部的一个领域正在建造风力发电厂使用的影响打桩。风电场运行期间,建筑在它全部,或在活动。进行了使用历史遥测数据之前任何风电场开发和收集遥测数据收集在2012年期间一个风电场的建设和操作另一个。close-to-significant增加密封使用前相比,风电场的发展。然而,风电场在一个大型的边缘增加使用面积,所以的存在风电场不太可能原因。施工期间没有明显位移作为一个整体。(丰度)显著降低到25公里从一堆活动;风电场的中心,有一个19 83%(95%置信区间)减少使用在休息时在桩相比,相当于平均位移估计440人。这相当于显著位移开始从预测得到的在166年和水平178分贝1 pa ((p p))。打桩活动;开车,海豹是分布式的non-piling场景。我们的空间和时间的量化避免风力发电场的港海豹减少不确定性和增加的关键鲁棒性的环境影响评估未来的发展。政策制定者将允许生产行业指导位移的可能性海豹在打桩;良好的水平和避免之间的关系率;允许更精确的环境评估期间进行自愿的过程。用于通知的缓解策略两个声音水平可能导致桩的位移和时间模式减少能量的大小吗位移的影响。

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