‘Super El Niño’ could bring wet winter and flooding to western US, climate scientists warn
Climate scientists are warning of a "super" El Niño, predicted to be the strongest of the century, which is expected to intensify this fall and winter and persist until early spring 2027. This recurring climate phenomenon, characterized by warmer sea surface temperatures in the Pacific, could bring a wet winter to parts of the western and southeastern United States, with coastal areas facing an elevated risk of flooding.

Briefing Summary
AI-generatedClimate scientists are warning of a "super" El Niño, predicted to be the strongest of the century, which is expected to intensify this fall and winter and persist until early spring 2027. This recurring climate phenomenon, characterized by warmer sea surface temperatures in the Pacific, could bring a wet winter to parts of the western and southeastern United States, with coastal areas facing an elevated risk of flooding. California, for instance, has a high chance of above-average rainfall, potentially increasing coastal flooding during strong storms or king tides, as evidenced by past devastating El Niños. While not expected to end drought in the Southwest, the event may also increase precipitation along the US Gulf and east coasts. Experts suggest this El Niño offers an opportunity to assess vulnerabilities and prepare for future climate change impacts.
Article analysis
Model · rule-basedKey claims
5 extractedPast El Niños have caused significant damage, including destroyed homes, flooding, deaths, and coastal erosion in California.
A 'super' El Niño, defined by sea surface temperatures at least 2C above average, is predicted to be the strongest of the century.
Climate models indicate a wet winter and elevated flood risk for coastal areas in the western and southeastern US.
California has a 70%-100% chance of above-average rainfall along its coast, increasing the likelihood of coastal flooding.
El Niño is not expected to completely erase drought in the US south-west due to low reservoir levels.