« L’urgence est là, nous regardons ailleurs »
filtre:
Gulf
2025
The Antarctic Circumpolar Current (ACC) is the world's strongest ocean current and plays a disproportionate role in the climate system due to its role as a conduit for major ocean basins. This current system is linked to the ocean's vertical overturning circulation, and is thus pivotal to the uptake of heat and CO2 in the ocean. The strength of the ACC has varied substantially across warm and cold climates in Earth's past, but the exact dynamical drivers of this change remain elusive. This is in part because ocean models have historically been unable to adequately resolve the small-scale processes that control current strength. Here, we assess a global ocean model simulation which resolves such processes to diagnose the impact of changing thermal, haline and wind conditions on the strength of the ACC. Our results show that, by 2050, the strength of the ACC declines by ∼20% for a high-emissions scenario. This decline is driven by meltwater from ice shelves around Antarctica, which is exported to lower latit
Selon une nouvelle étude américano-suisse, le "courant méridienne de retournement atlantique" — ou AMOC — n'a montré aucun signe de déclin au cours des 60 dernières années. Ce courant océanique est essentiel au climat doux qui règne en Europe de l'Ouest et du Nord. Mais sa stabilité ne signifie pas que les craintes de son effondrement soient infondées.
2024
Several high-profile research papers have brought renewed attention to the potential collapse of a crucial system of ocean currents known as the Atlantic Meridional Overturning Circulation, or AMOC, as we discussed in part one of this two-part post. Huge uncertainties in both the timing and details of potential impacts of such a collapse remain.
Les courants marins de l’océan Atlantique, qui façonnent une grande partie du climat mondial, changent de manière préoccupante. L’un des phénomènes les plus inquiétants est l’affaiblissement de la circulation méridionale de retournement de l’Atlantique (AMOC), un système de courants vitaux pour l’équilibre climatique de la Terre. En effet, ce processus, connu sous le nom de « grand convoyeur océanique », joue un rôle clé dans la régulation des températures et des conditions météorologiques à travers le monde. Selon des chercheurs, l’effondrement des courants de l’océan Atlantique pourrait être imminent, avec des conséquences catastrophiques au niveau mondial.
L'affaiblissement des courants dans l'Atlantique aura des effets « dévastateurs et irréversibles » sur de nombreux pays. La fonte rapide des glaciers arctiques pourrait précipiter leur effondrement.
The Atlantic Meridional Overturning Circulation is the main driver of northward heat transport in the Atlantic Ocean today, setting global climate patterns. Whether global warming has affected the strength of this overturning circulation over the past century is still debated: observational studies suggest that there has been persistent weakening since the mid-twentieth century, whereas climate models systematically simulate a stable circulation. Here, using Earth system and eddy-permitting coupled ocean–sea-ice models, we show that a freshening of the subarctic Atlantic Ocean and weakening of the overturning circulation increase the temperature and salinity of the South Atlantic on a decadal timescale through the propagation of Kelvin and Rossby waves. We also show that accounting for upper-end meltwater input in historical simulations significantly improves the data–model agreement on past changes in the Atlantic Meridional Overturning Circulation, yielding a slowdown of 0.46 sverdrups per decade since 1950
L’équilibre climatique de notre planète est menacé par un phénomène alarmant : le possible effondrement du courant de l’Atlantique Nord. Cette catastrophe potentielle, mise en lumière par une communauté de climatologues renommés, pourrait avoir des conséquences dévastatrices à l’échelle mondiale. Examinons de plus près les enjeux et les implications de cette situation préoccupante.
The idea that the AMOC is headed to collapse is very controversial, but it is clearly weakening. If the circulation did collapse, the consequences on both sides of the Atlantic Ocean would be immense—including large changes in temperature and a spike in weather-related disasters.
The Atlantic Ocean's most vital ocean current is showing troubling signs of reaching a disastrous tipping point. Oceanographer Stefan Rahmstorf tells Live Science what the impacts could be.
The network of Atlantic ocean currents keeping the Earth's climate stable are far closer to collapse than first estimated, scientists warn.