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Enhancing the Scientific Value of Industry Remotely Operated Vehicles (ROVs) in Our Oceans

机译:加强海洋中远程操作车辆(ROVS)的科学价值

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Remotely-operated vehicles (ROVs) are used extensively by the offshore oil and gas and renewables industries for inspection, maintenance, and repair of their infrastructure. With thousands of subsea structures monitored across the world’s oceans from the shallows to depths greater than 1000 m, there is a great and underutilised opportunity for their scientific use. Through slight modifications of ROV operations, and by augmenting industry workclass ROVs with a range of scientific equipment, industry can fuel scientific discoveries, contribute to an understanding of the impact of artificial structures in our oceans, and collect biotic and abiotic data to support our understanding of how oceans and marine life are changing. Here, we identify and describe operationally-feasible methods to alter adjust the way in which industry ROVs are operated to enhance the scientific value of data that they collect, without significantly impacting scheduling or adding to deployment costs. These include: rapid marine life survey protocols, imaging improvements, the addition of a range of scientific sensors, and collection of biological samples. By partnering with qualified and experienced research scientists, industry can improve the quality of their ROV-derived data, allowing the data to be analysed robustly. Small changes by industry now could provide substantial benefits to scientific research in the long-term and improve the quality of scientific data in existence once the structures require decommissioning. Such changes also have the potential to enhance industry’s environmental stewardship by improving their environmental management and facilitating more informed engagement with a range of external stakeholders, including regulators and the public.
机译:远程供应车辆(ROVS)由海上石油和天然气和可再生能源行业广泛用于检查,维护和修复其基础设施。随着来自浅滩的全球海洋监测的数千个海底结构,深入超过1000米,有一个伟大而未充分利用的科学用途机会。通过对ROV运营的轻微修改,通过使用一系列科学设备的增强行业工作场所,行业可以促进科学发现,有助于了解人工结构在海洋中的影响,并收集生物和非生物数据,以支持我们的理解海洋和海洋生物如何变化。在这里,我们识别并描述了可操作可行的方法来改变调整行业ROV的方式,以增强他们收集的数据的科学价值,而不会显着影响调度或增加部署成本。这些包括:快速海洋生命调查协议,成像改进,添加了一系列科学传感器,以及生物样本的集合。通过与合格且经验丰富的研究科学家合作,行业可以提高其ROV推导数据的质量,允许妥善分析数据。行业的小型变化现在可以在长期的长期内为科学研究提供大量利益,并一旦建筑物需要退役,就会提高存在的科学数据的质量。这种变化还有可能通过改善环境管理,并促进与一系列外部利益攸关方(包括监管机构和公众)更新的婚姻进行加强行业的环境管理。

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