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首页> 外文期刊>The Journal of Applied Ecology >Sound exposure in harbour seals during the installation of an offshore wind farm: predictions of auditory damage
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Sound exposure in harbour seals during the installation of an offshore wind farm: predictions of auditory damage

机译:声音暴露在港海豹海上风电场的安装:听觉损伤的预测

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With ambitious renewable energy targets, pile driving associated with offshore wind farm construction will become widespread in the marine environment. Many proposed wind farms overlap with the distribution of seals, and sound from pile driving has the potential to cause auditory damage. We report on a behavioural study during the construction of a wind farm using data from GPS/GSM tags on 24 harbour seals Phoca vitulina L. Pile driving data and acoustic propagation models, together with seal movement and dive data, allowed the prediction of auditory damage in each seal. Growth and recovery functions for auditory damage were combined to predict temporary auditory threshold shifts in each seal. Further, M-weighted cumulative sound exposure levels [cSELs(M-pw)] were calculated and compared to permanent auditory threshold shift exposure criteria for pinnipeds in water exposed to pulsed sounds. The closest distance of each seal to pile driving varied from 47 to 405km, and predicted maximum cSELs(M-pw) ranged from 1707 to 1953 dB re 1Pa(2)-s for individual seals. Comparison to exposure criteria suggests that half of the seals exceeded estimated permanent auditory damage thresholds. Prediction of auditory damage in marine mammals is a rapidly evolving field and has a number of key uncertainties associated with it. These include how sound propagates in shallow water environments and the effects of pulsed sounds on seal hearing; as such, our predictions should be viewed in this context.Policy implications. We predicted that half of the tagged seals received sound levels from pile driving that exceeded auditory damage thresholds for pinnipeds. These results have implications for offshore industry and will be important for policymakers developing guidance for pile driving. Developing engineering solutions to reduce sound levels at source or methods to deter animals from damage risk zones, or changing temporal patterns of piling could potentially reduce auditory damage risk. Future work should focus on validating these predictions by collecting auditory threshold information pre- and post-exposure to pile driving. Ultimately, information on population-level impacts of exposure to pile driving is required to ensure that offshore industry is developed in an environmentally sustainable manner.
机译:了雄心勃勃的可再生能源目标,堆驾驶与海上风电场建筑将成为普遍的海洋环境。分布的海豹,和声音打桩有可能引起听觉损害。使用数据从风电场的建设GPS / GSM标签24日港海豹Phoca vitulinal .打桩和声波传播的数据模型,一起密封运动和潜水数据,允许听觉损伤的预测在每一个密封。听觉损伤预测相结合在每个密封暂时性听阈变化。此外,M-weighted累积良好接触水平(csel (M-pw)]的计算和比较永久性听阈变化风险海豹在水中暴露在脉冲的标准的声音。驾驶各式各样来自47个405公里,预测最大csel (M-pw)范围从1707到1953分贝再保险1 pa (2) - s个人印章。暴露标准表明,一半的海豹超过了估计永久性的听力损伤阈值。海洋哺乳动物是一个快速发展的领域有一个相关联的许多重要的不确定性它。水环境和脉冲的影响在密封听到声音;应该被在这个上下文。的影响。标记的海豹接到桩良好的水平开车超过听觉损伤阈值海豹。海上工业和将是重要的政策制定者发展指导桩开车。减少噪音来源或方法来阻止动物伤害的风险区域,或改变时间的堆积可能模式降低听觉损伤风险。重点验证这些预测收集听觉阈值信息预处理和接触后打桩。群体的影响的信息打桩必须保证一个离岸产业发达环境可持续的方式。

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