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Climate Extremes and Risks: Links Between Climate Science and Decision-MakingThe World Climate Research Programme (WCRP) envisions a future where actionable climate information is universally accessible, supporting decision makers in preparing for and responding to climate change. In this perspective, we advocate for enhancing links between climate science and decision-making through a better and more decision-relevant understanding of climate impacts. The proposed framework comprises three pillars: climate science, impact science, and decision-making, focusing on generating seamless climate information from sub-seasonal, seasonal, decadal to century timescales informed by observed climate events and their impacts. The link between climate science and decision-making has strengthened in recent years, partly owing to undeniable impacts arising from disastrous weather extremes. Enhancing decision-relevant understanding involves utilizing lessons from past extreme events and implementing impact-based early warning systems to improve resilience. Integrated risk assessment and management require a comprehensive approach that encompasses good knowledge about possible impacts, hazard identification, monitoring, and communication of risks while acknowledging uncertainties inherent in climate predictions and projections, but not letting the uncertainty lead to decision paralysis. The importance of data accessibility, especially in the Global South, underscores the need for better coordination and resource allocation. Strategic frameworks should aim to enhance impact-related and open-access climate services around the world. Continuous improvements in predictive modeling and observational data are critical, as is ensuring that climate science remains relevant to decision makers locally and globally. Ultimately, fostering stronger collaborations and dedicated investments to process and tailor climate data will enhance societal preparedness, enabling communities to navigate the complexities of a changing climate effectively.
Document ID
20240016297
Acquisition Source
Goddard Space Flight Center
Document Type
Reprint (Version printed in journal)
Authors
Jana Sillmann
(University of Hamburg Hamburg, Germany)
Timothy H. Raupach
(University of New South Wales)
Kirsten L. Findell ORCID
(NOAA Geophysical Fluid Dynamics Laboratory Princeton, United States)
Markus Donat
(Barcelona Supercomputing Center)
Lincoln M. Alves
(National Institute for Space Research - INPE)
Lisa Alexander
(University of New South Wales)
Leonard Borchert
(University of Hamburg Hamburg, Germany)
Pablo Borges de Amorim
(Deutsche Gesellschaft für Internationale Zusammenarbeit Bonn, Germany)
Carlo Buontempo
(European Centre for Medium-Range Weather Forecasts Reading, United Kingdom)
Erich M. Fischer
(ETH Zurich Zurich, Switzerland)
Christian L. Franzke
(Institute for Basic Science, Busan, Republic of Korea)
Bin Guan
(University of California, Los Angeles Los Angeles, United States)
Marjolijn Haasnoot
(Utrecht University Utrecht, The Netherlands)
Ed Hawkins
(University of Reading Reading, United Kingdom)
Daniela Jacob ORCID
(Climate Service Center Germany (GERICS) Hamburg, Germany)
Roché Mahon
(Caribbean Institute for Meteorology and Hydrology Bridgetown, Barbados)
Douglas Maraun
(University of Graz Graz, Austria)
Monica A. Morrison
(National Center for Atmospheric Research Boulder, United States)
Benjamin Poschlod
(University of Hamburg Hamburg, Germany)
ALEXANDER C RUANE
(Goddard Institute for Space Studies New York, United States)
Shampa
(Bangladesh University of Engineering and Technology, Dhaka)
Tannecia Stephenson
(World Meteorological Organization Geneva, Switzerland)
Narelle van der Wel
(World Meteorological Organization)
Zhuo Wang
(University of Illinois at Urbana-Champaign, Champaign Urbana, United States)
Xuebin Zhang
(University of Victoria Victoria, Canada)
Josipa Županić
(University of Hamburg Hamburg, Germany)
Date Acquired
December 18, 2024
Publication Date
December 17, 2024
Publication Information
Publication: Frontiers in Climate
Publisher: Frontiers Media
Volume: 6
Issue Publication Date: December 18, 2024
e-ISSN: 2624-9553
Subject Category
Meteorology and Climatology
Funding Number(s)
WBS: 281945.02.80.01.32
WBS: 509496.02.80.01.03
PROJECT: KR19AC0K17553
PROJECT: 390683824
OTHER: 101003687
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
External Peer Committee
Keywords
climate extremes
climate impacts
climate risk
decision making
climate service
climate change
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