filtre:
Geophysical
2026
Plus le climat se réchauffe, moins les super El Niño font leur effet habituel. Une étude publiée dans Geophysical Research Letters révèle un paradoxe : ces phénomènes extrêmes deviendront plus fréquents, mais leurs impacts caractéristiques sur l’Amérique du Nord s’atténueront d’un tiers. Dans un monde à +3,5°C, un super El Niño ressemblera à un épisode banal.
2025
The Atlantic meridional overturning circulation (AMOC) is an important tipping element in the climate system. There is a large uncertainty whether the AMOC will start to collapse during the century under future climate change, as this requires long climate model simulations which are not always available. Here, we analyze targeted climate model simulations done with the Community Earth System Model (CESM) with the aim to develop a physics-based indicator for the onset of an AMOC tipping event. This indicator is diagnosed from the surface buoyancy fluxes over the North Atlantic Ocean and is performing successfully under quasi-equilibrium freshwater forcing, freshwater pulse forcing, climate change scenarios, and for different climate models. An analysis consisting of 25 different climate models shows that the AMOC could begin to collapse by 2063 (from 2026 to 2095, to percentiles) under an intermediate emission scenario (SSP2-4.5), or by 2055 (from 2023 to 2076, to percentiles) under a high-end emission scenar
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Ils publient sur les réseaux de Jean-Marc Jancovici : Adrien Couzinier, Cyrus Farhangi D’autres références : Adrien Couzinier, Cyrus Farhangi



