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Details of Award

NERC Reference : NE/V005855/1

Consequences of Arctic Warming for European Climate and Extreme Weather

Grant Award

Principal Investigator:
Professor J Screen, University of Exeter, Mathematics
Co-Investigator:
Dr J Catto, University of Exeter, Mathematics and Statistics
Co-Investigator:
Professor G Vallis, University of Exeter, Mathematics and Statistics
Co-Investigator:
Professor R Marsh, University of Southampton, Sch of Ocean and Earth Science
Co-Investigator:
Dr Y Lenn, Bangor University, Sch of Ocean Sciences
Co-Investigator:
Professor S Drijfhout, University of Southampton, Sch of Ocean and Earth Science
Co-Investigator:
Professor TG Shepherd, University of Reading, Meteorology
Co-Investigator:
Dr PAG Watson, University of Bristol, Geographical Sciences
Co-Investigator:
Dr TJ Woollings, University of Oxford, Oxford Physics
Co-Investigator:
Dr WJM Seviour, University of Exeter, Mathematics and Statistics
Co-Investigator:
Dr S I Thomson, University of Exeter, Mathematics and Statistics
Co-Investigator:
Professor HL Johnson, University of Oxford, Earth Sciences
Co-Investigator:
Professor MR Allen, University of Oxford, Geography - SoGE
Co-Investigator:
Dr J C Landy, University of Bristol, Geographical Sciences
Co-Investigator:
Professor LC Shaffrey, University of Reading, Meteorology
Co-Investigator:
Professor J Bamber, University of Bristol, Geographical Sciences
Co-Investigator:
Professor DM Mitchell, University of Bristol, Geographical Sciences
Science Area:
Atmospheric
Freshwater
Marine
Overall Classification:
Unknown
ENRIs:
Environmental Risks and Hazards
Global Change
Science Topics:
Climate & Climate Change
Regional & Extreme Weather
Abstract:
The Arctic region is undergoing dramatic changes, in the atmosphere, ocean, ice and on land. The Arctic lower atmosphere is warming at more than twice the rate of the global average, the Arctic sea ice and Greenland Ice Sheet melt have accelerated in the past 30 years. Notable observed changes in the ocean include the freshening of the Beaufort Gyre, and 'Atlantification' of the Barents Sea and of the Eastern Arctic Ocean. Such profound environmental change is likely to have implications across the globe - it is often said, "What happens in the Arctic doesn't stay in the Arctic". Past work has indicated that Arctic amplification can, in principle, affect European climate and extreme weather, but a clear picture of how and why is currently lacking. The 2019 Intergovernmental Panel on Climate Change (IPCC) Special Report on Oceans and Cryosphere concluded "changes in Arctic sea ice have the potential to influence midlatitude weather, but there is low confidence in the detection of this influence for specific weather types". ArctiCONNECT brings together experts in climate dynamics, polar and subpolar oceanography, and extreme weather, in order to transform understanding of the effects of accelerating Arctic warming on European climate and extreme weather, through an innovative and integrative program of research bridging theory, models of varying complexity, and observations. It will (i) uncover the atmospheric and oceanic mechanisms of Arctic influence on Europe; (ii) determine the ability of state-of-the-art climate models to simulate realistic Arctic-to-Europe teleconnections; and (iii) quantify and understand the contribution of Arctic warming to projected changes in European weather extremes and to the hazards posed to society.
Period of Award:
14 Nov 2020 - 31 Dec 2024
Value:
£1,800,150 Lead Split Award
Authorised funds only
NERC Reference:
NE/V005855/1
Grant Stage:
Awaiting Event/Action
Scheme:
Directed (Research Programmes)
Grant Status:
Active
Programme:
Highlights

This grant award has a total value of £1,800,150  

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FDAB - Financial Details (Award breakdown by headings)

DI - Other CostsIndirect - Indirect CostsDA - InvestigatorsDA - Estate CostsDI - StaffDA - Other Directly AllocatedDI - T&S
£7,622£710,344£264,028£165,686£568,962£9,928£73,578

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