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Heatwave durations accelerating faster than global warming, study finds • Muser Press As global temperatures rise, the world’s most intense heatwaves are not just getting longer – they’re lengthening at an accelerating pace. A study published

The world’s longest #heatwaves are getting longer – and faster than global warming. A new study in 'Nature Geoscience' shows duration accelerates with every fraction of a degree of warming. DOI: doi.org/10.1038/s415...
#AtmosphericDynamics #ClimateChange #EnvironmentalImpact 🧪☀️🌍

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Amazon hydrological extremes intensifying, tree rings study shows • Muser Press Scientists have used clues locked into tree rings to reveal major changes in the Amazon’s rainfall cycle over the last 40 years, and climate change plays a role

#Amazon #rainfall seasonality is intensifying, tree rings reveal. Wet season precipitation has increased while dry season rainfall has declined since 1980. Study published in 'Communications Earth & Environment'.
DOI: doi.org/10.1038/s432...
#ClimateChange #AtmosphericDynamics #Rainforest

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Figured I’d give bsky a try for my 1st side project in a while: I used idealized baroclinic waves to understand how mid-latitude weather systems destroy the equator-to-pole temperature gradient and how the QG secondary circulation “tries” to counteract this #wxtwitter #atmosphericdynamics

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We’re not yet finished at #EGU25!

@caihongliu.bsky.social will present at the session "Rossby wave dynamics in spatially compounding heatwaves in mid-summer 2023."

📅 11:37-11:47
📍Room 0.14

See you there!

#AtmosphericDynamics #WaterCycle #ExtratropicalCyclones #ClimateResearch #EGU2025

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Southern Ocean warming will bring lasting wet conditions to the western US and East Asia • Muser Press As global temperatures rise, the Southern Ocean will gradually release heat it has absorbed over decades, influencing weather patterns worldwide.

Southern Ocean warming will drive wetter winters in the western U.S. and summers in East Asia for decades. A 'Nature Geoscience' study links delayed ocean heat release to global rainfall shifts. DOI: doi.org/10.1038/s415...
#ClimateModelling #AtmosphericDynamics

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