Natural Phenomena
El Nino-Southern Oscillation
Also Known As ENSO Standard abbreviation for El Nino-Southern Oscillation. · El Nino · La Nina The cool phase of the oscillation, when central and eastern tropical Pacific sea surface temperatures run below average and the trade winds strengthen. La Nina is the opposite phase from El Nino; both are coequal phases of the same ENSO cycle, not separate phenomena.
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A recurring, irregular climate pattern centered on the tropical Pacific Ocean, in which sea surface temperatures and the trade winds that normally push warm surface water westward swing between two opposite phases every two to seven years. In its warm phase, commonly called El Nino, the trade winds weaken and warm water that is normally piled up in the western Pacific spreads east, suppressing the upwelling of cold, nutrient-rich deep water off the coast of South America and disrupting fisheries there, while shifting rainfall patterns across much of the globe. Its cool phase, La Nina, is close to a mirror image, with stronger trade winds and stronger-than-usual upwelling. Because the ocean and the atmosphere are so tightly coupled across a third of the planet's surface, a strong swing in either phase measurably shifts temperature and rainfall patterns far beyond the tropical Pacific itself, which is why national weather agencies track and forecast it as one of the single largest sources of year-to-year climate variability on Earth.
Facts
PeriodicityIrregular, recurring roughly every two to seven years with no fixed period; individual episodes typically last nine months to two years. 1 ScaleOcean-basin and global: centered on the tropical Pacific, but its atmospheric effects shift weather patterns worldwide. 1 First DescribedGilbert Walker identified the Southern Oscillation, the atmospheric pressure seesaw between the eastern and western Pacific, in the 1920s. A 1969 paper by Jacob Bjerknes linked it to the ocean warming long noticed by Peruvian fishermen and called El Nino, establishing the single coupled ocean-atmosphere phenomenon now called ENSO. 1 Cross-Tradition Connections
Associated With
ENSO is, mechanistically, a periodic weakening or reversal of the normal equatorial Pacific trade winds and the currents they drive, linking the two phenomena directly rather than by mere analogy.
Demonstrated By
Strong El Nino events sharply warm the waters around the Galapagos, collapsing the cold-water upwelling the food web depends on; marine iguana and Galapagos penguin populations are documented to crash during major episodes (1982-83, 1997-98), making Galapagos one of the most closely studied real-world demonstrations of ENSO's ecological effect.
El Nino-linked ocean warming was the principal driver of the mass coral bleaching events documented on the Great Barrier Reef in 1998, 2016 and 2017, making it a well-studied case of ENSO's effect on a marine ecosystem.
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