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Fish hydroacoustic survey standardization: A step forward based on comparisons of methods and systems from vertical surveys of a large deep lake

机译:鱼权调查标准化:基于来自大深湖的垂直调查的方法和系统的比较,前进

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摘要

Hydroacoustic methods are routinely used for fish population assessment and monitoring in lakes and reservoirs around the world and are particularly embedded in European and North American lake management. However, the comparability of hydroacoustic results can be difficult to assess due to the large number of variables (sound frequency, sound pulse duration, system manufacturer, analysis method, etc.) that can influence acoustic estimates. This study investigates the effect of variations in analysis method and hydroacoustic system on commonly produced outputs. Volume backscattering strength (S_v), mean target strength (TS), fish abundance, and biomass were estimated using two analysis methods (echo integration and track-counting) using data recorded from a large, deep lake (Windermere, UK) by four vertically oriented split-beam systems operating at three sound frequencies (120 kHz, 200 kHz, and 400 kHz). The two analysis methods used produced similar estimates of fish abundance and fish biomass. We therefore concluded that echo integration and trackcounting can be robustly used and outputs justifiably compared under the conditions of the Windermere surveys. In addition, we compared mean S_v, mean TS, fish abundance, and biomass estimates across the four hydroacoustic systems. The only significant result was for abundance estimates, however, the system made a small contribution to the overall variability. All four systems provided similar results for the other metrics, demonstrating that independent hydroacoustic surveys operating within the European Standard can make a major contribution to the assessment and monitoring of fish populations in deep lakes and reservoirs.
机译:水声方法通常用于世界各地的湖泊和水库中的鱼群评估和监测,并特别嵌入欧洲和北美湖泊管理中。然而,由于可以影响声学估计的大量变量(声频,声音脉冲持续时间,系统制造商,分析方法等),水声结果的可比性可能难以评估。本研究研究了分析方法和水声系统变化对常用产出的影响。使用两种分析方法(回声集成和追踪)使用从大型湖(Windermere,UK)垂直记录的数据估计,估计体积反向散射强度(S_V),鱼类丰度和生物质。定向的分流梁系统以三个声频(120 kHz,200 kHz和400 kHz)操作。两种分析方法使用了鱼类丰度和鱼生物量的类似估计。因此,我们得出结论,在Windermere调查的条件下,可以稳健地使用回声集成和轨迹和轨迹。此外,我们将平均S_V,平均TS,鱼丰和生物量估计与四个水声系统进行比较。然而,唯一的重要结果是为丰富的估计,该系统对整体变异性作出了巨大贡献。所有四种系统为其他指标提供了类似的结果,展示了欧洲标准内运行的独立水声调查可以对深湖和水库中的鱼群进行评估和监测的重大贡献。

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