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El Ni帽o Southern Oscillation caused spike in 2023 temperatures, study finds

El Ni帽o Southern Oscillation caused spike in 2023 temperatures, new study found
El Ni帽o and La Ni帽a are the warm and cool phases of a natural climate pattern across the tropical Pacific known as the El Ni帽o-Southern Oscillation, or 鈥淓NSO鈥 for short. The pattern shifts back and forth irregularly every two to seven years, bringing predictable changes in ocean temperature and disrupting the normal wind and rainfall patterns across the tropics. These changes in the seasonal climate of the world's biggest ocean have a cascade of global side effects. Credit: NASA

A study by scientists at the University of Miami Rosenstiel School of Marine, Atmospheric, and Earth Science identified El Ni帽o鈥揝outhern Oscillation as the primary cause of the spike in global surface temperature in 2023, not human-induced climate change. The rapid rise in global surface temperature in 2023 led to concerns and speculation among the public and media as to the cause.

The study, titled "" was published in the journal Atmospheric Chemistry and 糖心视频ics.

"Given the pressing nature of the issue, we wanted to thoroughly investigate the primary cause of last year's spike in temperatures," said the study's lead author Shiv Priyam Raghuraman, who completed the work as a postdoctoral researcher at the Rosenstiel School. "Our experiments showed that when human influences were absent from climate simulations, global warming spikes were still produced."

The researchers analyzed models that allow the climate to evolve without any influence from human activity to show that there is a 10% chance that a spike in temperatures occurs when an El Ni帽o event was preceded by a long La Ni帽a, as happened in 2022鈥2023.

Furthermore, nearly all spikes were associated with an El Ni帽o event. The results indicate that the 2023 warming spike was primarily caused by the El Ni帽o鈥揝outhern Oscillation, rather than human-induced global warming events.

In 2023, global temperatures reached unprecedented levels, with many regions experiencing , which contributed to one of the hottest years on record.

The year saw remarkable temperature anomalies, particularly in Europe and parts of the Middle East, where heat waves brought record highs, often exceeding 40掳C (104掳F). The oceans also reached higher-than-normal temperatures, resulting in weather extremes such as intense storms and prolonged droughts in various parts of the world.

"This result does not take away from the fact that human emission of is responsible for the long-term warming trend and that this warming will continue until the net emission of CO2 and other greenhouse gases is brought to zero," said Brian Soden, a co-author of the study and a professor of atmospheric sciences at the Rosenstiel School.

El Ni帽o is a climate phenomenon characterized by the periodic warming of sea surface temperatures in the central and eastern Pacific Ocean. It significantly impacts global weather patterns and can lead to environmental and climatic changes.

Human-induced changes are a significant driver of long-term climate change through the release of greenhouse gases, primarily carbon dioxide and methane, into the atmosphere. Activities such as burning for energy, deforestation, and have led to a dramatic increase in these gases, trapping heat and resulting in a warming planet.

This study notes that ENSO variability against a background human-induced trend can lead to year-on-year spikes that are also historical temperature records.

More information: Shiv Priyam Raghuraman et al, The 2023 global warming spike was driven by the El Ni帽o鈥揝outhern Oscillation, Atmospheric Chemistry and 糖心视频ics (2024).

Provided by University of Miami

Citation: El Ni帽o Southern Oscillation caused spike in 2023 temperatures, study finds (2024, October 15) retrieved 1 November 2025 from /news/2024-10-el-nio-southern-oscillation-spike.html
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