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首页> 外文期刊>Frontiers in Marine Science >Delivering sustained, coordinated and integrated observations of the Southern Ocean for global impact
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Delivering sustained, coordinated and integrated observations of the Southern Ocean for global impact

机译:为全球影响提供持续,协调和综合的南大洋观测

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The Southern Ocean is disproportionately important in its effect on the Earth system, impacting climatic, biogeochemical and ecological systems, which makes recent observed changes to this system cause for global concern. The enhanced understanding and improvements in predictive skill needed for understanding and projecting future states of the Southern Ocean require sustained observations. Over the last decade, the Southern Ocean Observing System (SOOS) has established networks for enhancing regional coordination and research community groups to advance development of observing system capabilities. These networks support delivery of the SOOS 20-year vision, which is to develop a circumpolar system that ensures time series of key variables, and deliver the greatest impact from data to all key end-users. Although the Southern Ocean remains one of the least-observed ocean regions, enhanced international coordination and advances in autonomous platforms have resulted in progress towards addressing the need for sustained observations of this region. Since 2009, the Southern Ocean community has deployed over 5700 observational platforms south of 40°S. Large-scale, multi-year or sustained, multidisciplinary efforts have been supported and are now delivering observations of essential variables at space and time scales that enable assessment of changes being observed in Southern Ocean systems. The improved observational coverage, however, is predominantly for the open ocean, encompasses the summer, consists of primarily physical oceanographic variables and covers surface to 2000 m. Significant gaps remain in observations of the ice-impacted ocean, the sea ice, depths more than 2000 m, the air-sea-ice interface, biogeochemical and biological variables, and for seasons other than summer. Addressing these data gaps in a sustained way requires parallel advances in coordination networks, cyberinfrastructure and data management tools, observational platform and sensor technology, platform interrogation and data-transmission technologies, modeling frameworks, and internationally agreed sampling requirements of key variables. This paper presents a community statement on the major scientific and observational progress of the last decade, and importantly, an assessment of key priorities for the coming decade, towards achieving the SOOS vision and delivering essential data to all end users.
机译:南大洋对地球系统的影响极其重要,它影响着气候,生物地球化学和生态系统,这使得最近观测到的对该系统的变化引起了全球关注。为了持续了解和预测南大洋的未来状况,需要增强对预测技能的了解和改进。在过去的十年中,南方海洋观测系统(SOOS)建立了网络,以加强区域协调和研究社区团体,以促进观测系统能力的发展。这些网络支持SOOS 20年愿景的实现,该愿景是开发一种极地系统,以确保关键变量的时间序列,并将数据对所有关键最终用户的影响最大。尽管南大洋仍然是被观察最少的海洋区域之一,但加强国际协调和自主平台的进步已导致在满足对该区域进行持续观测的需求方面取得了进展。自2009年以来,南大洋社区已在40°S以南部署了5700多个观测平台。大规模,多年或持续,多学科的努力得到了支持,目前正在对时空尺度上的基本变量进行观测,从而能够评估在南大洋系统中观测到的变化。但是,改善的观测范围主要是在开放海域,包括夏季,主要由海洋物理变量组成,覆盖地表至2000 m。在受冰影响的海洋,海冰,超过2000 m的深度,空气-海冰界面,生物地球化学和生物变量以及除夏季以外的其他季节的观测中,仍然存在明显的差距。要持续解决这些数据缺口,需要协调网络,网络基础设施和数据管理工具,观测平台和传感器技术,平台询问和数据传输技术,建模框架以及国际公认的关键变量采样要求同时取得进步。本文就最近十年的重大科学和观测进展发表了一份社区声明,重要的是,评估了未来十年的关键优先事项,以实现SOOS愿景并向所有最终用户提供基本数据。

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