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Journal Article

Extreme Events Contributing to Tipping Elements and Tipping Points

A. Romanou; G. C. Hegerl; S. I. Seneviratne; B. Abis; A. Bastos; A. Conversi; A. Landolfi; H. Kim; P. E. Lerner; J. Mekus; B. L. Otto-Bliesner; F. S. R. Pausata; I. Pinto; L. Suarez-Guiterrez
Surveys in Geophysics · Vol. 46, Issue 2 · pp. 375-420 · 2025

Abstract

This review article provides a synthesis and perspective on how weather and climate extreme events can play a role in influencing tipping elements and triggering tipping points in the Earth System. An example of a potential critical global tipping point, induced by climate extremes in an increasingly warmer climate, is Amazon rainforest dieback that could be driven by regional increases in droughts and exacerbated by fires, in addition to deforestation. A tipping element associated with the boreal forest might also be vulnerable to heat, drought and fire. An oceanic example is the potential collapse of the Atlantic meridional overturning circulation due to extreme variability in freshwater inputs, while marine heatwaves and high acidity extremes can lead to coral reef collapse. Extreme heat events may furthermore play an important role in ice sheet, glacier and permafrost stability. Regional severe extreme events could also lead to tipping in ecosystems, as well as in human systems, in response to climate drivers. However, substantial scientific uncertainty remains on mechanistic links between extreme events and tipping points. Earth observations are of high relevance to evaluate and constrain those links between extreme events and tipping elements, by determining conditions leading to delayed recovery with a potential for tipping in the atmosphere, on land, in vegetation, and in the ocean. In the subsurface ocean, there is a lack of consistent, synoptic and high frequency observations of changes in both ocean physics and biogeochemistry. This review article shows the importance of considering the interface between extreme events and tipping points, two topics usually addressed in isolation, and the need for continued monitoring to observe early warning signs and to evaluate Earth system response to extreme events as well as improving model skill in simulating extremes, compound extremes and tipping elements.

Bibliographic Information

JournalSurveys in Geophysics
PublisherSpringer
Publication Date2025-04-01
Publication Year2025
Volume46
Issue2
Pages375-420
Document TypeJournal Article
Print ISSN0169-3298
eISSN1573-0956
DOI10.1007/s10712-024-09863-7

Access Information

NARA Access Coverage1972-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10712
Publisher PageOpen Publisher Page
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