Observing fish interactions with marine energy turbines using acoustic cameras

IF 5.6 1区 农林科学 Q1 FISHERIES
Emma Cotter, Garrett Staines
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引用次数: 2

Abstract

Marine current energy converters such as tidal and riverine turbines have the potential to provide reliable, clean power. The risk of collision of fishes with marine energy turbines is not yet well understood, in part due to the challenges associated with observing fish at turbine sites. Turbidity and light availability can limit the effectiveness of optical sensors like video cameras, motivating the use of acoustic cameras for this task. However, challenges persist in collecting and interpreting data acquired from acoustic cameras. Given the limited number of turbine deployments to date, it is prudent to draw on the application of acoustic cameras to monitor fish in other scenarios. This article synthesizes their use for other fisheries applications to inform best practices and set realistic expectations for the results of acoustic camera monitoring at turbine sites. We discuss six key tasks performed with acoustic cameras: detecting objects, identifying objects as fish, counting fish, measuring fish, classifying fish taxonomically and analysing fish behavior. Specific challenges to monitoring fish at turbine sites are discussed. This article is intended to serve as a reference for researchers, regulators and marine energy developers on effective use of acoustic cameras to monitor fish at turbine sites. The studies detailed in this article provide evidence that, in some scenarios, acoustic cameras can be used to inform the risk of fish collision with marine energy turbines but doing so requires careful study design and data processing.

Abstract Image

使用声学相机观察鱼类与海洋能源涡轮机的相互作用
潮汐和河流涡轮机等洋流能源转换器有潜力提供可靠、清洁的电力。鱼类与海洋能源涡轮机碰撞的风险尚不清楚,部分原因是在涡轮机现场观察鱼类面临挑战。浊度和光的可用性会限制像摄像机这样的光学传感器的有效性,从而促使使用声学摄像机来完成这项任务。然而,在收集和解释从声学相机获得的数据方面仍然存在挑战。鉴于迄今为止涡轮机部署的数量有限,在其他情况下,谨慎的做法是利用声学摄像机来监测鱼类。本文综合了它们在其他渔业应用中的应用,为最佳实践提供信息,并对涡轮机现场的声学摄像机监测结果设定了现实的期望。我们讨论了声学相机执行的六项关键任务:检测物体、识别物体为鱼类、计数鱼类、测量鱼类、对鱼类进行分类和分析鱼类行为。讨论了在涡轮机现场监测鱼类的具体挑战。本文旨在为研究人员、监管机构和海洋能源开发商提供参考,以有效使用声学摄像机监测涡轮机现场的鱼类。本文中详细介绍的研究提供了证据,证明在某些情况下,声学摄像机可以用来告知鱼类与海洋能源涡轮机碰撞的风险,但这样做需要仔细的研究设计和数据处理。
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来源期刊
Fish and Fisheries
Fish and Fisheries 农林科学-渔业
CiteScore
12.80
自引率
6.00%
发文量
83
期刊介绍: Fish and Fisheries adopts a broad, interdisciplinary approach to the subject of fish biology and fisheries. It draws contributions in the form of major synoptic papers and syntheses or meta-analyses that lay out new approaches, re-examine existing findings, methods or theory, and discuss papers and commentaries from diverse areas. Focal areas include fish palaeontology, molecular biology and ecology, genetics, biochemistry, physiology, ecology, behaviour, evolutionary studies, conservation, assessment, population dynamics, mathematical modelling, ecosystem analysis and the social, economic and policy aspects of fisheries where they are grounded in a scientific approach. A paper in Fish and Fisheries must draw upon all key elements of the existing literature on a topic, normally have a broad geographic and/or taxonomic scope, and provide general points which make it compelling to a wide range of readers whatever their geographical location. So, in short, we aim to publish articles that make syntheses of old or synoptic, long-term or spatially widespread data, introduce or consolidate fresh concepts or theory, or, in the Ghoti section, briefly justify preliminary, new synoptic ideas. Please note that authors of submissions not meeting this mandate will be directed to the appropriate primary literature.
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