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New applications of hydroacoustic methods for monitoring shallow water aquatic ecosystems: the case of mussel culture grounds

机译:水声法在监测浅水水生生态系统中的新应用:以贻贝养殖场为例

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The development of acoustics tools and methods for monitoring anthropized ecosystems represents a new field for the application of acoustics. Monitoring such an environment was not possible with single vertical echo sounders, due to the fact that the artificial structures and the natural targets were not distinguishable. Monitoring data were collected along the French Mediterranean coastline, during five short surveys of mussel culture longline areas. Both the Reson Seabat 6012 multibeam sonar (455 kHz) and the Simrad SR 240 omnidirectional sonar (23.75 kHz) were used for target detection. The former tools allow accurate allocation of the different types of echoes to artefacts, fish schools and scattered fish. The school characteristics collected included morphological, geographical (GPS, school location), and behavioural (connections with the longlines). An acoustic survey undertaken with the same hardware near the study area allowed the comparison of fish schools and the TS distribution of individual fish in the open sea and in the mussel area. These data permitted us to evaluate the ecological impact of a mussel culture on the ecosystem, in a context of predation behaviour of fish on these longlines. Finally, the acoustic data revealed the configuration of each concession and the level of charge of each line. We discuss the applicability of this technology for in situ real time monitoring for joint management of such ecosystems. The information can allow littoral cooperative management or incorporating it into an ecosystem approach.
机译:用于监测人类生态系统的声学工具和方法的发展代表了声学应用的新领域。由于无法区分人造结构和自然目标,因此无法使用单个垂直回声测深仪来监视这种环境。在对贻贝养殖延绳钓地区进行的五次简短调查中,收集了沿法国地中海沿岸的监测数据。 Reson Seabat 6012多波束声纳(455 kHz)和Simrad SR 240全向声纳(23.75 kHz)均用于目标检测。前一种工具可以将不同类型的回波准确分配给人工制品,鱼类群和散落的鱼类。收集的学校特征包括形态,地理(GPS,学校位置)和行为(与延绳钓的联系)。在研究区域附近使用相同的硬件进行的声学调查可以比较鱼类群和公海和贻贝区域中单个鱼类的TS分布。这些数据使我们能够根据贻贝养殖在延绳钓上的捕食行为来评估贻贝养殖对生态系统的生态影响。最后,声学数据揭示了每个特许权的配置和每条线路的收费水平。我们讨论了该技术在此类生态系统联合管理的现场实时监控中的适用性。该信息可以支持沿海合作管理或将其纳入生态系统方法。

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