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利用被动声学方法跟踪海洋结构物周围小型鲸类的 3D 运动。

Passive acoustic methods for tracking the 3D movements of small cetaceans around marine structures.

机构信息

Sea Mammal Research Unit, Scottish Oceans Institute, University of St Andrews, St Andrews, Scotland.

SMRU Consulting, Scottish Oceans Institute, University of St Andrews, St Andrews, Scotland.

出版信息

PLoS One. 2020 May 29;15(5):e0229058. doi: 10.1371/journal.pone.0229058. eCollection 2020.

Abstract

A wide range of anthropogenic structures exist in the marine environment with the extent of these set to increase as the global offshore renewable energy industry grows. Many of these pose acute risks to marine wildlife; for example, tidal energy generators have the potential to injure or kill seals and small cetaceans through collisions with moving turbine parts. Information on fine scale behaviour of animals close to operational turbines is required to understand the likely impact of these new technologies. There are inherent challenges associated with measuring the underwater movements of marine animals which have, so far, limited data collection. Here, we describe the development and application of a system for monitoring the three-dimensional movements of cetaceans in the immediate vicinity of a subsea structure. The system comprises twelve hydrophones and software for the detection and localisation of vocal marine mammals. We present data demonstrating the systems practical performance during a deployment on an operational tidal turbine between October 2017 and October 2019. Three-dimensional locations of cetaceans were derived from the passive acoustic data using time of arrival differences on each hydrophone. Localisation accuracy was assessed with an artificial sound source at known locations and a refined method of error estimation is presented. Calibration trials show that the system can accurately localise sounds to 2m accuracy within 20m of the turbine but that localisations become highly inaccurate at distances greater than 35m. The system is currently being used to provide data on rates of encounters between cetaceans and the turbine and to provide high resolution tracking data for animals close to the turbine. These data can be used to inform stakeholders and regulators on the likely impact of tidal turbines on cetaceans.

摘要

海洋环境中存在着广泛的人为结构,随着全球海上可再生能源产业的发展,这些结构的数量还将增加。其中许多结构对海洋野生动物构成了严重的威胁;例如,潮汐能发电机在与运动的涡轮机部件碰撞时,有可能伤害或杀死海豹和小型鲸目动物。为了了解这些新技术可能产生的影响,需要了解动物在运行中的涡轮机附近的精细行为信息。目前,由于测量海洋动物水下运动的固有挑战,数据收集非常有限。在这里,我们描述了一种用于监测海底结构附近鲸类动物三维运动的系统的开发和应用。该系统由十二个水听器和用于检测和定位海洋哺乳动物发声的软件组成。我们展示了在 2017 年 10 月至 2019 年 10 月期间在一个运行中的潮汐涡轮机上进行部署时该系统的实际性能的数据。通过在每个水听器上的到达时间差异,从被动声学数据中推导出了鲸类动物的三维位置。使用已知位置的人工声源评估了定位精度,并提出了一种改进的误差估计方法。校准试验表明,该系统可以在距离涡轮机 20 米以内以 2 米的精度准确地定位声音,但在距离大于 35 米时定位精度会急剧下降。该系统目前正被用于提供有关鲸类动物与涡轮机相遇频率的数据,并为靠近涡轮机的动物提供高分辨率跟踪数据。这些数据可用于向利益相关者和监管机构提供有关潮汐涡轮机对鲸类动物影响的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f87b/7259614/d0736973ac2f/pone.0229058.g001.jpg

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