globalchange  > 影响、适应和脆弱性
项目编号: 1341717
项目名称:
Collaborative Research: Seasonal Sea Ice Production in the Ross Sea, Antarctica
作者: Stephen Ackley
承担单位: University of Texas at San Antonio
批准年: 2014
开始日期: 2015-06-15
结束日期: 2018-05-31
资助金额: USD661350
资助来源: US-NSF
项目类别: Standard Grant
国家: US
语种: 英语
特色学科分类: Geosciences - Polar
英文关键词: ross sea ; sea ice production ; sea ice area ; collaborative research ; art research tool ; air-sea boundary layer flux ; sea ice ; new sea ice ; sea-ice production ; air-sea-ice interaction ; sea ice property ; sea ice increase ; sea ice zone ; ice ; ice thickness ; change ; team ; antarctica ; project ; icepod instrument system ; ice formation process ; ice drift ; air-ice-ocean interaction ; austral fall ; ross ice shelf polynya ; ocean
英文摘要: Proposal Title: Collaborative Research: Seasonal Sea Ice Production in the Ross Sea, Antarctica (working title changed from submitted title)
Institutions: UT-San Antonio; Columbia University; Naval Postgraduate School; Woods Hole Oceanographic Institute; UC@Boulder

The one place on Earth consistently showing increases in sea ice area, duration, and concentration is the Ross Sea in Antarctica. Satellite imagery shows about half of the Ross Sea increases are associated with changes in the austral fall, when the new sea ice is forming. The most pronounced changes are also located near polynyas, which are areas of open ocean surrounded by sea ice. To understand the processes driving the sea ice increase, and to determine if the increase in sea ice area is also accompanied by a change in ice thickness, this project will conduct an oceanographic cruise to the polynyas of the Ross Sea in April and May, 2017, which is the austral fall. The team will deploy state of the art research tools including unmanned airborne systems (UASs, commonly called drones), autonomous underwater vehicles (AUVs), and remotely operated underwater vehicles (ROVs). Using these tools and others, the team will study atmospheric, oceanic, and sea ice properties and processes concurrently. A change in sea ice production will necessarily change the ocean water below, which may have significant consequences for global ocean circulation patterns, a topic of international importance. All the involved institutions will be training students, and all share the goal of expanding climate literacy in the US, emphasizing the role high latitudes play in the Earth's dynamic climate.

The main goal of the project is to improve estimates of sea ice production and water mass transformation in the Ross Sea. The team will fully capture the spatial and temporal changes in air-ice-ocean interactions when they are initiated in the austral fall, and then track the changes into the winter and spring using ice buoys, and airborne mapping with the newly commissioned IcePod instrument system, which is deployed on the US Antarctic Program's LC-130 fleet. The oceanographic cruise will include stations in and outside of both the Terra Nova Bay and Ross Ice Shelf polynyas. Measurements to be made include air-sea boundary layer fluxes of heat, freshwater, and trace gases, radiation, and meteorology in the air; ice formation processes, ice thickness, snow depth, mass balance, and ice drift within the sea ice zone; and temperature, salinity, and momentum in the ocean below. Following collection of the field data, the team will improve both model parameterizations of air-sea-ice interactions and remote sensing algorithms. Model parameterizations are needed to determine if sea-ice production has increased in crucial areas, and if so, why (e.g., stronger winds or fresher oceans). The remote sensing validation will facilitate change detection over wider areas and verify model predictions over time. Accordingly this project will contribute to the international Southern Ocean Observing System (SOOS) goal of measuring essential climate variables continuously to monitor the state of the ocean and ice cover into the future.
资源类型: 项目
标识符: http://119.78.100.158/handle/2HF3EXSE/94339
Appears in Collections:影响、适应和脆弱性
气候减缓与适应

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Recommended Citation:
Stephen Ackley. Collaborative Research: Seasonal Sea Ice Production in the Ross Sea, Antarctica. 2014-01-01.
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