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Updated: Sep 16, 2025

Simulating Impacts of Ice Storms on Forest Ecosystems
Published on: June 30, 2020
Climate change has increased the odds of extreme regional forest fire years globally
John T Abatzoglou1, Crystal A Kolden2, Alison C Cullen3
1School of Engineering, University of California, Merced, CA, USA. jabatzoglou@ucmerced.edu.
Abstract:
Regions across the globe have experienced devastating fire years in the past decade with far-reaching impacts. Here, we examine the role of antecedent and concurrent climate variability in enabling extreme regional fire years across global forests. These extreme years commonly coincided with extreme (1-in-15-year) fire weather indices (FWI) and featured a four and five-fold increase in the number of large fires and fire carbon emissions, respectively, compared with non-extreme years. Years with such extreme FWI metrics are 88-152% more likely across global forested lands under a contemporary (2011-2040) climate compared to a quasi-preindustrial (1851-1900) climate, with the most pronounced increased risk in temperate and Amazonian forests. Our results show that human-caused climate change is raising the odds of extreme climate-driven fire years across forested regions of the globe, necessitating proactive measures to mitigate risks and adapt to extreme fire years.
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