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水下视觉剖面仪6:一种用于自主和有线平台的粒度光谱和浮游生物成像传感器。

The Underwater Vision Profiler 6: an imaging sensor of particle size spectra and plankton, for autonomous and cabled platforms.

作者信息

Picheral Marc, Catalano Camille, Brousseau Denis, Claustre Hervé, Coppola Laurent, Leymarie Edouard, Coindat Jérôme, Dias Fabio, Fevre Sylvain, Guidi Lionel, Irisson Jean Olivier, Legendre Louis, Lombard Fabien, Mortier Laurent, Penkerch Christophe, Rogge Andreas, Schmechtig Catherine, Thibault Simon, Tixier Thierry, Waite Anya, Stemmann Lars

机构信息

Sorbonne Université, Centre National de la Recherche Scientifique Laboratoire d'Océanographie de Villefranche (LOV) Villefranche-sur-Mer France.

Centre d'Optique, Phototonique et Laser, Université Laval Quebec City Quebec Canada.

出版信息

Limnol Oceanogr Methods. 2022 Feb;20(2):115-129. doi: 10.1002/lom3.10475. Epub 2021 Dec 23.

Abstract

Autonomous and cabled platforms are revolutionizing our understanding of ocean systems by providing 4D monitoring of the water column, thus going beyond the reach of ship-based surveys and increasing the depth of remotely sensed observations. However, very few commercially available sensors for such platforms are capable of monitoring large particulate matter (100-2000 m) and plankton despite their important roles in the biological carbon pump and as trophic links from phytoplankton to fish. Here, we provide details of a new, commercially available scientific camera-based particle counter, specifically designed to be deployed on autonomous and cabled platforms: the Underwater Vision Profiler 6 (UVP6). Indeed, the UVP6 camera-and-lighting and processing system, while small in size and requiring low power, provides data of quality comparable to that of previous much larger UVPs deployed from ships. We detail the UVP6 camera settings, its performance when acquiring data on aquatic particles and plankton, their quality control, analysis of its recordings, and streaming from in situ acquisition to users. In addition, we explain how the UVP6 has already been integrated into platforms such as BGC-Argo floats, gliders and long-term mooring systems (autonomous platforms). Finally, we use results from actual deployments to illustrate how UVP6 data can contribute to addressing longstanding questions in marine science, and also suggest new avenues that can be explored using UVP6-equipped autonomous platforms.

摘要

自主式和有线平台正在彻底改变我们对海洋系统的认识,它们通过对水柱进行四维监测,超越了船基调查的范围,并增加了遥感观测的深度。然而,尽管大颗粒物质(100 - 2000微米)和浮游生物在生物碳泵以及从浮游植物到鱼类的营养链中发挥着重要作用,但适用于此类平台的市售传感器中,能够监测它们的却寥寥无几。在此,我们详细介绍一种新的、市售的基于科学相机的颗粒计数器,它专门设计用于部署在自主式和有线平台上:水下视觉剖面仪6型(UVP6)。事实上,UVP6的相机、照明和处理系统体积小、功耗低,但其提供的数据质量可与以前从船上部署的大得多的UVP相媲美。我们详细介绍了UVP6的相机设置、获取水生颗粒和浮游生物数据时的性能、数据质量控制、对其记录的分析以及从现场采集到用户的数据流。此外,我们还解释了UVP6是如何已被集成到诸如BGC - 阿尔戈浮标、滑翔器和长期系泊系统(自主平台)等平台中的。最后,我们利用实际部署的结果来说明UVP6数据如何有助于解决海洋科学中的长期问题,并提出使用配备UVP6的自主平台可以探索的新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b5e/9304221/ca6ead021f8c/LOM3-20-115-g002.jpg

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