Collaborative Research: Understanding the impact of Arctic sea ice loss on summertime climate change
Collaborative Research: Understanding the impact of Arctic sea ice loss on summertime climate change
批准号:
2300037
负责人:
Tiffany Shaw
金额:
$59.65万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2023
资助国家:
美国
项目状态:
未结题
起止时间:
2023-07-01 至 2026-06-30
中文摘要
北冰洋海冰的减少是世界变暖的戏剧性证据,因为融化季节结束时的海冰覆盖面积已从1980年的约700万平方英里减少到2022年的约500万平方英里。冰盖的消失会产生变暖效应,因为冰层的消失会暴露出更暗的海洋表面,使海洋能够吸收更多的阳光。这种变暖对北极圈以下天气和气候的影响是一个非常有趣的话题,因为北极变暖可以通过减弱急流并将其南移来影响中纬度天气。到目前为止,大多数研究都集中在冬季的影响上,特别是冷空气爆发和暴风雪。但PI和其他机构最近的研究表明,急流的减弱也可能发生在夏季,导致沿中纬度风暴路径移动的气旋和反气旋减弱。这项工作还表明,类似的影响也可以发生,作为对温室气体导致的大气变暖的直接反应,因此需要做出一些努力来区分海冰减少的影响。这个项目研究了海冰减少对夏季大气环流的影响,解决了四个问题:1)北冰洋海冰减少在多大程度上影响夏季大气环流,通过什么机制?2)什么时候对夏季环流的影响将变得明显?3)与大气变暖对夏季环流的直接影响相比,海冰减少对夏季环流的影响如何?4)北极海冰减少对热波的影响是什么,热波影响与环流变化有什么关系?本研究是通过分析探测和归因模式对比项目(DAMIP)和极地放大模式对比项目(PAMIP)产生的气候模式模拟,以及使用共同体地球系统模式(CESM)专门为该项目创建的模拟进行的。为该项目创建的模拟旨在展示北冰洋海冰减少和大气温室效应所迫使的不同反应。为该项目开发的一种分析方法将海冰减少对气旋的影响与其对反气旋的影响分开,这是很有意义的,因为反气旋与夏季热浪有关。鉴于需要准备和适应气候变化的后果,这项工作具有社会和科学意义。北冰洋海冰减少对大气环流和相关极端天气的可能影响引起了科学界和媒体的极大关注,因此,更好地了解海冰减少的可能后果是非常必要的。该项目还将通过领导力联盟为研究生提供支持和培训,并通过领导力联盟招募本科生。领导力联盟是一个为促进高等教育和研究的多样性而创建的组织。该奖项反映了NSF的法定使命,并通过使用基金会的智力优势和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
The decline of Arctic sea ice is dramatic evidence that the world is warming, as sea ice cover at the end of the melt season has fallen from about 7 million square miles in 1980 to about 5 million in 2022. The loss of ice cover has a warming effect as ice loss exposes the darker ocean surface allowing the ocean to absorb more sunlight. The influence of this warming on weather and climate below the Arctic circle is a topic of great interest, as Arctic warming can influence midlatitude weather by weakening the jet stream and shifting it southward. Most of the research to date has focused on the effect in winter, looking in particular at cold air outbreaks and snowstorms. But recent work by the PI and others suggests that the weakening of the jet stream could also happen in summer, resulting in a weakening of the cyclones and anticyclones that travel along the storm tracks of the middle latitudes. The work also shows that similar effects can occur as a direct response to the warming of the atmosphere by greenhouse gases, thus some effort is required to separate out the effects of sea ice decline.This project addresses the effects of sea ice decline on atmospheric circulation in summer, addressing four questions: 1) To what extent does Arctic sea ice loss affect summer atmospheric circulation, and through what mechanisms? 2) When will the effects on summer circulation become evident? 3) How does the impact of sea ice decline compare to the direct effect of atmospheric warming on summer circulation? 4) What is the effect of Arctic sea ice decline on heat waves and how are the heat waves effects related to the circulation changes?The research is conducted through analysis of climate model simulations generated in the Detection and Attribution Model Intercomparison Project (DAMIP) and the Polar Amplification Model Intercomparison Project (PAMIP), as well as simulations created specifically for the project using the Community Earth System Model (CESM). Simulations created for the project are designed to show the separate responses forced by Arctic sea ice decline and the greenhouse warming of the atmosphere. One analysis method developed for the project separates the effects of sea ice decline on cyclones from its effects on anticyclones, which is of interest as anticyclones are associated with summer heat waves.The work is of societal as well as scientific interest given the need to prepare for and adapt to the consequences of climate change. The possible effect of Arctic sea ice loss on atmospheric circulation and related extreme weather has attracted considerable attention, both in the scientific community and the media, thus better basic science understanding of the likely consequences of sea ice decline is highly desirable. The project would also provide support and training to a graduate student and recruit an undergraduate student through the Leadership Alliance, an organization created to promote diversity in higher-level education and research.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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Understanding Heat-transfer Regimes in Past, Present and Future Climates
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批准号:2033467
-
项目类别:Standard Grant
-
资助金额:$57.44万
-
财政年份:2021
-
负责人:Tiffany Shaw
-
依托单位:
Understanding Storm Track Position and Intensity Across a Range of Timescales
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批准号:1742944
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项目类别:Standard Grant
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资助金额:$45.04万
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财政年份:2018
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负责人:Tiffany Shaw
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依托单位:
CAREER: Understanding Moisture Transport and Its Coupling to the Large-scale Energy and Momentum of the Northern Hemisphere Summer Circulation
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批准号:1538944
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项目类别:Standard Grant
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资助金额:$73.48万
-
财政年份:2015
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负责人:Tiffany Shaw
-
依托单位:
Workshop on Storm Tracks, Jets, and their Modes of Variability in Switzerland; August 24-28, 2015
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批准号:1519169
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项目类别:Standard Grant
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资助金额:$1.5万
-
财政年份:2015
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负责人:Tiffany Shaw
-
依托单位:
CAREER: Understanding Moisture Transport and Its Coupling to the Large-scale Energy and Momentum of the Northern Hemisphere Summer Circulation
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批准号:1255208
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项目类别:Standard Grant
-
资助金额:$75.13万
-
财政年份:2013
-
负责人:Tiffany Shaw
-
依托单位:
The Impact of Downward Wave Coupling on the Tropospheric Circulation
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批准号:1129519
-
项目类别:Standard Grant
-
资助金额:$34.36万
-
财政年份:2011
-
负责人:Tiffany Shaw
-
依托单位:
国内基金
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