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首页> 外文期刊>Estuarine Coastal and Shelf Science >Comparison of vertical mobile hydroacoustic survey strategies for monitoring fish distributions in the Gironde estuary (France)
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Comparison of vertical mobile hydroacoustic survey strategies for monitoring fish distributions in the Gironde estuary (France)

机译:垂直流动水声调查策略在吉伦特河口(法国)中监测鱼类分布的比较

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摘要

Today, hydroacoustic technologies are able to monitor fish populations and assess fish biomass by providing data of a high spatio-temporal resolution, and without damaging the environment. Such techniques are widely used in lakes and marine environments, but they remain much less tested in shallow waters - especially in estuarine habitats. Our study was carried out using a strictly methodological approach. This was necessary in order to take into account the highly changeable nature of the ecosystem in question. Hydroacoustic surveys were conducted in the mesohaline part of the Gironde estuary using SIMRAD EK60 split-beam echosounders, operating simultaneously at two frequencies (70 kHz and 120 kHz). Different mobile hydroacoustic surveys were tested in different seasons, with vertical acquisition, in order to compare variability of results due to the sampling strategy, and to validate the relevance of our design by repeating the surveys. The results obtained on survey design choices gave similar outcomes when sampling was carried out with or against the current and between two mobile designs. The comparison between flood and ebb tides gave different results from one day to another but we observed the same evolution for each flood tide or for each ebb tide on several successive days. This acoustic study in the Gironde estuary was used to validate a reliable sampling mobile design. It is the first step in the process of gaining a better understanding of estuarine ecosystems, an understanding that will be enhanced by combining our data with data from a variety of other sources.
机译:如今,水声技术能够通过提供高时空分辨率的数据来监视鱼类种群并评估鱼类生物量,而又不会破坏环境。此类技术广泛用于湖泊和海洋环境中,但在浅水区(尤其是在河口栖息地)的测试仍然少得多。我们的研究是使用严格的方法论方法进行的。为了考虑到所讨论的生态系统的高度可变性,这是必要的。使用SIMRAD EK60分离波束回声测深仪在吉伦特河口的中卤线部分进行水声勘测,同时在两个频率(70 kHz和120 kHz)下工作。为了比较由于采样策略而导致的结果变化,并通过重复调查来验证我们设计的相关性,在垂直采集的不同季节对不同的流动水声调查进行了测试。当在当前或两个移动设计之间进行采样时,从调查设计选择中获得的结果给出了相似的结果。洪水和退潮之间的比较从一天到另一天给出了不同的结果,但我们在连续几天的每一潮汐或每个退潮中观察到相同的演变。吉伦特河口的这项声学研究用于验证可靠的移动采样设计。这是对河口生态系统有了更好理解的第一步,通过将我们的数据与来自其他各种来源的数据相结合,将增强理解。

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