首页> 外文会议>IEEE/OES Acoustics in Underwater Geosciences Symposium >Acoustics characterization of micronekton spatial distribution in Indian Ocean using scientific surveys and integrated marine observing system database: Acoustics characterization of micronekton
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Acoustics characterization of micronekton spatial distribution in Indian Ocean using scientific surveys and integrated marine observing system database: Acoustics characterization of micronekton

机译:使用科学调查和综合海洋观测系统数据库的印度洋微口空间分布的声学特征:Micronekton声学表征

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In this work scientific echosounder were used hull mounted onboard R/V Marion Dufresne II to scrutinize the vertical distribution of micronekton according to water masses characteristics along transect which were discriminated with spatial remote sensing data. Acoustic data were collected continuously at 38 kHz frequency during eighteen transits carried out in the South-West Indian Ocean (20???60??S, 50???80??E) between 2010 and 2014. The data set used includes scientific and opportunistic fishing surveys from Integrated Marine Observing System database. A structure in three main depth layers i.e., "surface", "intermediate" and "deep", has been found continuously all along the survey. Changes of micronektonic vertical structure were investigated along North South latitude: the surface layer acoustic density and thickness decrease by going southward. The intermediate layer is generally almost empty except between 30??S and 40??S. The deep layer acoustic density increases from North to South but its thickness does not change significantly. To assess the importance of these vertical changes, a spatially constrained clustering was applied on acoustic data and a positive correlation was established between vertical acoustic organization and oceanographic fronts' position. We conclude that spatial organization of micronekton is structured depending on water masses and confirm the interest of collecting acoustic data from fishery vessels to complete scientific surveys that are often restricted in time and space.
机译:在这项工作中,使用Scentific Echosounder在船上安装船体R / V Marion Dufresne II,以根据水群特征仔细地仔细审查微调的垂直分布,其与空间遥感数据进行区分。在2010年至2010年间,在十八辆过渡期间连续地以38 kHz频率连续收集声学数据(20 ???,50 ???,50 ??? e)之间。使用的数据集包括来自综合海洋观测系统数据库的科学和机会主义捕捞调查。三个主深度层的结构,即“表面”,“中间”和“深”,沿着调查一直在全面地发现。沿北纬度地研究了微酮垂直结构的变化:通过向南,表面层声学密度和厚度降低。除30 ??和40°之间,中间层通常几乎是空的。深层声学密度从北向南增加,但其厚度不会显着变化。为了评估这些垂直变化的重要性,在声学数据上施加空间约束聚类,在垂直声学组织和海洋方向的位置建立了正相关。我们得出结论,Micronekton的空间组织根据水群体构建,并确认从渔船收集声学数据以完成经常在时间和空间受到限制的科学调查的兴趣。

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