Tag: NOAA

  • Prepare for El Niño: UN Warns Potentially Strongest Event in Decades Could Intensify Global Weather

    Prepare for El Niño: UN Warns Potentially Strongest Event in Decades Could Intensify Global Weather

    The United Nations is warning governments and communities around the world to prepare for a potentially powerful El Niño event that could develop into one of the strongest on record, bringing widespread disruptions to weather patterns already intensified by climate change.

    According to the World Meteorological Organization (WMO), El Niño conditions are expected to strengthen throughout 2026, increasing the likelihood of extreme weather events across multiple continents. Several national forecasting agencies now suggest the phenomenon could reach “super El Niño” status, a rare category reserved for the most intense events.

    Scientists have been closely monitoring ocean temperatures in the tropical Pacific Ocean, where El Niño develops. Data collected over recent months shows a dramatic shift from cooler-than-average conditions late last year to significantly warmer waters stretching across the central and eastern Pacific.

    By April, warming in the key Niño monitoring region had become unmistakable, and temperatures have continued to rise since then.

    El Niño occurs when changes in atmospheric wind patterns allow unusually warm ocean water to spread eastward across the equatorial Pacific. This warming alters atmospheric circulation, affecting rainfall, temperatures, and storm activity around the world.

    Researchers say this year’s event shows signs of becoming exceptionally strong.

    Professor Adam Scaife of the UK Met Office said scientists are highly confident that a major El Niño is developing and noted that it could potentially rival or exceed previous record-setting events.

    Historical data shows that only a handful of “very strong” El Niño episodes have occurred since 1950. Current forecasting models estimate that ocean temperature anomalies could peak near levels seen during the powerful El Niño events of 1982-83 and 2015-16, with some projections suggesting even stronger warming.

    One factor driving concern is the enormous pool of unusually warm water that has formed beneath the Pacific Ocean surface. Satellite observations, ocean buoys, and underwater monitoring systems have detected temperatures more than six degrees Celsius above average in some areas hundreds of meters below the surface.

    Scientists say this subsurface heat often rises to the surface over time, strengthening El Niño and amplifying its influence on global weather systems.

    Michelle L’Heureux, a scientist at the U.S. National Oceanic and Atmospheric Administration’s Climate Prediction Center, said the magnitude of the subsurface warmth rivals conditions observed before some of the strongest El Niño events in modern history.

    UN Secretary-General António Guterres warned that the developing phenomenon could worsen the impacts of an already warming planet.

    “El Niño conditions will pour fuel on the fire of a warming world,” Guterres said, emphasizing that climate-related impacts are increasingly crossing borders and affecting communities worldwide.

    Potential Global Impacts

    While every El Niño event differs, strong episodes have historically produced significant weather disruptions across multiple regions.

    In South America, Southeast Asia, and Australia, El Niño often increases the risk of heatwaves, droughts, and wildfires. India can experience a weakened monsoon season, potentially affecting agriculture and water supplies.

    Parts of the Greater Horn of Africa may face drier conditions, while sections of East Asia and the southern United States often see heavier rainfall and an increased risk of flooding.

    The effects can extend even further. El Niño influences global agricultural production, fisheries, transportation networks, and energy systems. Previous major events have been associated with food shortages, rising commodity prices, and economic losses reaching hundreds of billions of dollars worldwide.

    Climate Change Raises the Stakes

    Scientists caution that even if this year’s El Niño does not become a record-breaker, it could still produce unprecedented impacts because it is occurring on a planet that is already significantly warmer due to human-caused climate change.

    The combination of natural climate variability and long-term global warming could push temperatures higher, intensify extreme weather events, and increase stress on vulnerable communities.

    Although forecasting months in advance remains challenging, experts agree that governments, businesses, and disaster management agencies should begin preparing now for potentially severe weather disruptions later this year and into 2027.

  • Over 40 Trillion Gallons of Rainfall: Hurricane Helene and Storms Devastate the Southeast

    Over 40 Trillion Gallons of Rainfall: Hurricane Helene and Storms Devastate the Southeast

    In a staggering weather event, more than 40 trillion gallons of rain inundated the Southeast United States over the past week, resulting from Hurricane Helene and an ordinary rainstorm that preceded it. This unprecedented deluge has left experts and meteorologists in disbelief.

    To put this immense volume into perspective, the rainfall is equivalent to filling Dallas Cowboys’ AT&T Stadium 51,000 times or Lake Tahoe just once. If the rainfall were concentrated solely on North Carolina, it would cover the ground to a depth of 3.5 feet (over 1 meter)—enough water to fill over 60 million Olympic-sized swimming pools.

    “This is an astronomical amount of precipitation,” stated Ed Clark, head of the National Oceanic and Atmospheric Administration’s National Water Center in Tuscaloosa, Alabama. “In my 25 years at the weather service, I have never witnessed such a geographically extensive event with this sheer volume of rain.”

    The aftermath of the storm has been devastating, with reports indicating that over 100 people have lost their lives due to the flooding. Private meteorologist Ryan Maue, a former NOAA chief scientist, calculated that the eastern United States received 40 trillion gallons of rain through Sunday, with 20 trillion gallons concentrated in Georgia, Tennessee, the Carolinas, and Florida from Hurricane Helene alone.

    According to Clark, the rainfall figure of 40 trillion gallons (151 trillion liters) is likely conservative, with Maue suggesting that 1 to 2 trillion additional gallons may have fallen, particularly in Virginia. Notably, this volume surpasses the total water stored in key Colorado River basin reservoirs, including Lake Powell and Lake Mead, combined.

    Meteorologists have noted that the extreme rainfall resulted from a combination of several storm systems. Before Helene made landfall, a low-pressure system had stalled over the Southeast, allowing for continuous heavy rainfall and funneling warm water from the Gulf of Mexico. Additionally, a storm that did not reach named status parked off the North Carolina coast, dropping as much as 20 inches of rain, according to state climatologist Kathie Dello.

    Hurricane Helene, one of the most significant storms in recent decades, brought an immense amount of rain due to its youth and rapid movement before striking the Appalachians. “It wasn’t just a perfect storm; it was a combination of multiple storms that contributed to this extraordinary rainfall,” said Maue.

    The geographical impact was exacerbated by the mountainous terrain, which increases moisture extraction from the atmosphere. According to meteorologists, the highest recorded rainfall in North Carolina was 31.33 inches in the small town of Busick, while Mount Mitchell received over 2 feet of rain.

    Reflecting on past storms, Clark remarked, “Before Hurricane Harvey in 2017, I never thought we’d measure rainfall in feet. Now, we see events year after year where rainfall is measured in feet.”

    The prevailing trend indicates that storms are becoming wetter due to climate change, with experts stating that warmer air holds nearly 4% more moisture for every degree Fahrenheit increase. Given that the world has warmed over 2 degrees Fahrenheit since pre-industrial times, the implications for weather patterns are significant.

    Debates among meteorologists continue regarding the extent to which climate change has influenced Hurricane Helene’s rainfall. A quick analysis from scientists at the Lawrence Berkeley National Lab suggested that climate change resulted in 50% more rainfall in certain regions of Georgia and the Carolinas during Helene. Dello emphasized that the “fingerprints of climate change” are evident in the intensity and frequency of such storms.

    “We’ve observed tropical storm impacts in western North Carolina,” Dello noted. “But these storms are now both wetter and warmer. In the past, a tropical storm would have brought some rain and damage, but nothing compared to the apocalyptic destruction we’ve seen today.”

    Source: AP