Global Extreme Fire Weather: Increasing Human Footprint with more Heatwaves, Droughts, & High Winds @PaulHBeckwith
Global Extreme Fire Weather: Increasing Human Footprint with more Heatwaves, Droughts, & High Winds  @PaulHBeckwith
Uploaded March 2026 | Updated September 2026, 2 weeks ago
Global Extreme Fire Weather: Increasing Human Footprint with more Heatwaves, Droughts, & High Winds

I chat about recent research on global wildfires.

More importantly, Newton had a haircut today.

He is a new dog!!

I weighed him before and after. The weight of his removed fur was 2.6 lbs, very close to my guess of 2.7 lbs!!!

Please donate to PaulBeckwith.net to support my research and videos connecting the dots on abrupt climate system mayhem.

References and Links:

Recent article from space.com:
Wildfires are getting more intense around the world due to human-driven climate change
space.com/science/climate-change/wildfires-are-getting-more-intense-around-the-world-due-to-human-driven-climate-change

Recent Peer-Reviewed Scientific Journal Paper from Earth System Science Journal
State of Wildfires 2024–2025
essd.copernicus.org/articles/17/5377/2025/essd-17-5377-2025.pdf

Abstract.
Climate change is increasing the frequency and intensity of extreme wildfires globally, yet our understanding of these high-impact events remains uneven and shaped by media attention and regional research biases. The State of Wildfires project systematically tracks global and regional fire activity of each annual fire season, analyses the causes of prominent extreme wildfire events, and projects the likelihood of similar events occurring in future climate scenarios. This, its second annual report, covers the March 2024 to February 2025 fire season. During the 2024–2025 fire season, fire-related carbon (C) emissions totaled 2.2 Pg C, 9 % above average and the sixth highest on record since 2003, despite below-average global burned area (BA). Extreme fire seasons in South America’s rainforests, dry forests, and wetlands and in Canada’s boreal forests pushed up the global C emissions total. Fire C emissions were over 4 times above average in Bolivia, 3 times above average in Canada, and ∼ 50 % above average in Brazil and Venezuela. Wildfires in 2024–2025 caused 100 fatalities in Nepal, 34 in South Africa, and 31 in Los Angeles, with additional fatalities reported in Canada, Côte d’Ivoire, Portugal, and Türkiye. The Eaton and Palisades fires in Southern California caused 150 000 evacuations and USD 140 billion in damages. Communities in Brazil, Bolivia, Southern California, and northern India were exposed to fine particulate matter at concentrations 13–60 times WHO’s daily air quality standards. We evaluated the causes and predictability of four extreme wildfire episodes from the 2024–2025 fire season, including in Northeast Amazonia (January–March 2024), the Pantanal–Chiquitano border regions of Brazil and Bolivia (August–September 2024), Southern California (January 2025), and the Congo Basin (July–August 2024). Anomalous weather created conditions for these regional extremes, while fuel availability and human ignitions shaped spatial patterns and temporal fire dynamics. In the three tropical regions, prolonged drought was the dominant fire enabler, whereas in California, extreme heat, wind, and antecedent fuel build-up were compounding enablers. Our attribution analyses show
that climate change made extreme fire weather in Northeast Amazonia 30–70 times more likely, increasing BA roughly 4-fold compared to a scenario without climate change. In the Pantanal–Chiquitano, fire weather was 4–5 times more likely, with 35-fold increases in BA. Meanwhile, our analyses suggest that BA was 25 times higher in Southern California due to climate change. The Congo Basin’s fire weather was 3–8 times more likely with climate change, with a 2.7-fold increase in BA. Socioeconomic changes since the pre-industrial period, including land-use change, also likely increased BA in Northeast Amazonia. Our models project that events on the scale of 2024–2025 will become up to 57 %, 34 %, and 50 % more frequent than in the modern era in Northeast Amazonia, the Pantanal–Chiquitano, and the Congo Basin, respectively, under a medium–high scenario (SSP370) by 2100. Climate action can limit the added risk, with frequency increases held to below 15 % in all three regions under a strong mitigation scenario (SSP126). In Southern California, the future trajectory of extreme fire likelihood remains highly uncertain due to poorly constrained climate–vegetation–fire interactions influencing fuel moisture, though our models suggest that risk may decline in future...

New paper: Science Advances: The emerging human fingerprint on global extreme fire weather
science.org/doi/epdf/10.1126/sciadv.adx9845

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Global Extreme Fire Weather: Increasing Human Footprint with more Heatwaves, Droughts, & High Winds

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