Journal article : Letter
Global increases in compound flood-hot extreme hazards under climate warming
- Abstract:
- Under global warming, a novel category of extreme events has become increasingly apparent, where flood and hot extremes occur in rapid succession, causing significant damages to infrastructure and ecosystems. However, these bivariate compound flood-hot extreme (CFH) hazards have not been comprehensively examined at the global scale, and their evolution under climate warming remains unstudied. Here, we present the first global picture of projected changes in CFH hazards by using a cascade modeling chain of CMIP6 models, satellite and reanalysis datasets, bias correction and hydrological models. We find an increasing percentage of floods will be accompanied by hot extremes under climate change; the joint return periods of CFHs are projected to decrease globally, particularly in the tropics. These decreasing joint return periods are largely driven by changes in hot extremes and indicate a likely increase of CFH hazards, and ultimately highlight the urgent need to conduct adaptation planning for future risks.
- Publication status:
- Published
- Peer review status:
- Peer reviewed
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(Preview, Version of record, pdf, 5.7MB, Terms of use)
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- Publisher copy:
- 10.1029/2022GL097726
Authors
- Publisher:
- American Geophysical Union
- Journal:
- Geophysical Research Letters More from this journal
- Volume:
- 49
- Issue:
- 8
- Article number:
- e2022GL097726
- Publication date:
- 2022-04-23
- Acceptance date:
- 2022-04-06
- DOI:
- EISSN:
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1944-8007
- ISSN:
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0094-8276
- Language:
-
English
- Keywords:
- Subtype:
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Letter
- Pubs id:
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1249572
- Local pid:
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pubs:1249572
- Deposit date:
-
2022-04-06
- ARK identifier:
Terms of use
- Copyright holder:
- American Geophysical Union
- Copyright date:
- 2022
- Rights statement:
- © 2022. American Geophysical Union. All Rights Reserved.
- Notes:
- This is the accepted manuscript version of the article. The final version is available online from Wiley at: https://doi.org/10.1029/2022GL097726
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