Modern technologies and integrated observing systems are “instrumental” to fisheries oceanography: A brief history of ocean data collection

IF 1.9 2区 农林科学 Q2 FISHERIES Fisheries Oceanography Pub Date : 2022-12-15 DOI:10.1111/fog.12619
Franklin B. Schwing
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引用次数: 5

Abstract

Interdisciplinary data fuel fisheries oceanography research and the ecosystem-based approaches to management and sustainable development it informs. Underlying this is a distributed ocean observing framework that is integrated, interoperable, interactive, and accessible. In recognition of the 30th anniversary of Fisheries Oceanography the journal, this paper reviews the evolution of observing instruments and platforms used in contemporary fisheries oceanography the science. Illustrated with personal anecdotes, past efforts to create or adopt observing technologies, and examples of their use in research, this highlights the spectrum of instruments, systems, and programs used to survey and monitor ocean ecosystems. Modern ocean observing systems are complex and varied, reflecting the range and diversity of data required by fisheries oceanographers. These systems require a large and ongoing investment and an interdisciplinary community of scientists, engineers, and technicians to design, build, install, operate, and maintain them. Common themes emerge from a review of past successful instrument R&D and deployments. It is a highly collaborative, integrative, and iterative process. Most systems are the result of vision, planning, and perseverance, backed by careful calibration and intercomparison. Long-term support is essential; public–private partnerships that leverage funding, technology, and infrastructure are critical. Sustaining long time series for monitoring population and ecosystem change and to support fisheries oceanography research is a priority. Future areas of focus include continuously innovating and updating technologies, implementing a backbone of core observations, and maintaining a nimble infrastructure and R&D capacity to seize new opportunities and address emerging challenges.

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现代技术和综合观测系统对渔业海洋学“有帮助”:海洋数据收集简史
跨学科数据为渔业海洋学研究和基于生态系统的管理和可持续发展方法提供了动力。在此基础上是一个分布式的海洋观测框架,它是集成的、可互操作的、交互式的和可访问的。为纪念《渔业海洋学》创刊30周年,本文回顾了当代渔业海洋学观测仪器和平台的演变。本书以个人轶事、过去创造或采用观测技术的努力,以及它们在研究中的应用为例,重点介绍了用于调查和监测海洋生态系统的各种仪器、系统和程序。现代海洋观测系统复杂多样,反映了渔业海洋学家所需数据的范围和多样性。这些系统需要大量且持续的投资,以及由科学家、工程师和技术人员组成的跨学科社区来设计、建造、安装、操作和维护它们。对过去成功的仪器研发和部署的回顾中出现了共同的主题。这是一个高度协作、整合和迭代的过程。大多数系统都是远见、计划和坚持不懈的结果,并以仔细的校准和相互比较为后盾。长期支持至关重要;利用资金、技术和基础设施的公私伙伴关系至关重要。维持长时间序列以监测人口和生态系统变化并支持渔业海洋学研究是一个优先事项。未来的重点领域包括不断创新和更新技术,实施核心观察的骨干,保持灵活的基础设施和研发能力,以抓住新机遇并应对新挑战。
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来源期刊
Fisheries Oceanography
Fisheries Oceanography 农林科学-海洋学
CiteScore
5.00
自引率
7.70%
发文量
50
审稿时长
>18 weeks
期刊介绍: The international journal of the Japanese Society for Fisheries Oceanography, Fisheries Oceanography is designed to present a forum for the exchange of information amongst fisheries scientists worldwide. Fisheries Oceanography: presents original research articles relating the production and dynamics of fish populations to the marine environment examines entire food chains - not just single species identifies mechanisms controlling abundance explores factors affecting the recruitment and abundance of fish species and all higher marine tropic levels
期刊最新文献
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