Polar Ocean Observations: A Critical Gap in the Observing System and Its Effect on Environmental Predictions From Hours to a Season
Наблюдения за полярными океанами: критический пробел в системе наблюдений и его влияние на прогнозы состояния окружающей среды от нескольких часов до сезона
2019-08-06
SCID: 54.1/3uzfna89
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Year of Polar Predictionocean and sea ice reanalysesocean observing systempolar ocean observationssea ice forecasting
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Abstract (AI)
There is a growing need for operational oceanographic predictions in both the Arctic and Antarctic polar regions. In the former, this is driven by a declining ice cover accompanied by an increase in maritime traffic and exploitation of marine resources. Oceanographic predictions in the Antarctic are also important, both to support Antarctic operations and also to help elucidate processes governing sea ice and ice shelf stability. However, a significant gap exists in the ocean observing system in polar regions, compared to most areas of the global ocean, hindering the reliability of ocean and sea ice forecasts. This gap can also be seen from the spread in ocean and sea ice reanalyses for polar regions which provide an estimate of their uncertainty. The reduced reliability of polar predictions may affect the quality of various applications including search and rescue, coupling with numerical weather and seasonal predictions, historical reconstructions (reanalysis), aquaculture and environmental management including environmental emergency response. Here, we outline the status of existing near-real time ocean observational efforts in polar regions, discuss gaps, and explore perspectives for the future. Specific recommendations include a renewed call for open access to data, especially real-time data, as a critical capability for improved sea ice and weather forecasting and other environmental prediction needs. Dedicated efforts are also needed to make use of additional observations made as part of the Year of Polar Prediction (YOPP; 2017-2019) to inform optimal observing system design. To provide a polar extension to the Argo network, it is recommended that a network of ice-borne sea ice and upper-ocean observing buoys be deployed and supported operationally in ice-covered areas together with autonomous profiling floats and gliders (potentially with ice detection capability) in seasonally ice covered seas. Finally, additional efforts to better measure and parameterize surface exchanges in polar regions are much needed to improve coupled environmental prediction.
Key Findings
1
Observations collected during the Year of Polar Prediction should be used to design more effective polar observing systems.
2
Open access to especially real-time observations is identified as critical for improving sea-ice, weather, and broader environmental predictions.
3
Polar regions have a substantial ocean-observing-system gap relative to most of the global ocean, reducing the reliability of ocean and sea-ice predictions.
4
Reduced polar prediction reliability affects search and rescue, weather and seasonal forecasting, reanalysis, aquaculture, environmental management, and emergency response.
5
Spread among polar ocean and sea-ice reanalyses demonstrates substantial uncertainty associated with inadequate observations.
6
The abstract recommends extending Argo-like coverage through operational ice-borne sea-ice and upper-ocean buoys, autonomous profiling floats, and gliders in seasonally ice-covered seas.
Research Object
Ocean and sea-ice observing and prediction systems in the Arctic and Antarctic polar regions
Research Subject
Observational gaps and their effects on the reliability and uncertainty of ocean, sea-ice, and related environmental predictions from hours to a season
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2019-08-06
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