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Equipping an underwater glider with a new echosounder to explore ocean ecosystems

机译:用新的echosounder装饰水下滑翔机探索海洋生态系统

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Mobile autonomous platforms are revolutionizing our understanding of ocean systems by providing a solution for the four-dimensional observation problem faced in the ocean. The sensors commonly used in autonomous platforms, however, leave a large gap in our observations of the food chain between primary producers and large predators. Echosounders have the potential to fill this gap. Here, we present details of a new, commercially available quantitative scientific echosounder specifically designed to meet the challenges of deployment in autonomous platforms, including those of relatively low power and small size, while providing data comparable to systems deployed from ships. We detail the integration into a Slocum glider of this echosounder and both upwardand downward-looking transducers to provide guidance for those considering similar efforts. We also identify key features of the system and the challenges that must be overcome to ensure collection of high-quality data. The most important feature of the integrated glider is that it carries instruments capable of providing depth profiles of bio-optical and environmental variables that are synoptic with the echosounder data. On a dive-by-dive basis, we can use these co-located data to quantify relationships between the acoustic, bio-optical, and environmental data. A field deployment of the echosounder-equipped glider elucidated the processes driving diel migration in zooplankton and nekton in Monterey Bay, emphasizing the novel science questions that can be addressed using contemporary means of accessing the sea and new, integrated tools for describing the habitat and its inhabitants.
机译:移动自主平台通过为海洋面临的四维观察问题提供解决方案,彻底改变了对海洋系统的理解。然而,在自治平台中常用的传感器在我们对初级生产者和大型捕食者之间的食物链观察中留下了很大的差距。 echosounders有可能填补这种差距。在这里,我们介绍了一个新的商业上可用的定量科学回波器的详细信息,专门设计用于满足自主平台部署的挑战,包括相对低的功率和小尺寸,同时提供与船舶部署的系统相当的数据。我们将整合到该呼吸困难者的Slocum滑翔机和Upwordand向下的换能器中,为那些考虑类似努力的人提供指导。我们还确定了系统的关键特征以及必须克服的挑战,以确保高质量数据收集。集成滑翔机最重要的特点是,它带有能够提供与eChosounder数据简化的生物光学和环境变量的深度配置的仪器。在逐步潜水的基础上,我们可以使用这些共同定位的数据量化声学,生物光学和环境数据之间的关系。配备echosounder的滑翔机的现场部署阐明了在蒙特里湾佐南顿和尼克顿驾驶Diel迁移的过程,强调了可以使用访问海洋和新的综合工具的当代手段来解决的新型科学问题,用于描述栖息地及其栖息地居民。

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