gshc2020.com

Climate change increases wildfire risks in Yosemite and other national parks

tags:
@ 30/07/2026

Climate change increases wildfire risks in Yosemite and other national parks
Fire frequency in Yosemite National Park. Left: Estimated 1849, Middle: Actual fire from 1950–2023, Right: Projected 2071–2100. Credit: Gonzalez and Verkerke, 2026 in Environmental Research Letters.

New UC Berkeley-led research indicates that continued climate change could severely increase wildfire above natural levels in Yosemite, Sequoia, Kings Canyon and Lassen Volcanic national parks.

The study, which was published in Environmental Research Letters, also provides data to help park managers reduce risks by proactively targeting natural fire to decrease understory fuels.

"Fire is natural and necessary for forest health in California, but human-caused climate change is increasing wildfire above natural levels," said lead author Patrick Gonzalez, an associate adjunct professor in the Department of Environmental Science, Policy, and Management. "Through this work, I aim to help National Park Service staff, who have previously told me of the need for park-specific data to inform field decisions on fire management that account for climate change."

Fire managers currently use pre-European American settlement in 1849 as a reference condition to select areas for letting naturally ignited fires burn or for low-severity prescribed burning to reduce understory fuels. However, the researchers found that, since 1895, climate change has already increased temperatures in the four national parks by more than the global average.

To project further changes in wildfire, Gonzalez (PhD '97 Energy and Resources) and his co-author, Joshua Verkerke (MS '24 Environmental Science, Policy, and Management), analyzed how climate change could cause vegetation biome shifts in Sierra Nevada mountain ecosystems. "We found that the conventional method missed areas at risk under climate change," Gonzalez said.

The research found that climate change could shift biomes 230–480 meters upslope (755–1,575 feet) under the highest-emissions scenario, with red fir forest and alpine grassland at highest risk. Upslope shifts of lower-elevation vegetation could expand fire into areas where wildfire is currently rare. Further, the study found that, under the highest-emissions scenario, continued climate change could double or triple fire frequency. Fire frequency could stay the same or increase only slightly under a reduced-emissions scenario.

"Our results provide data for a new forward-looking approach that uses climate change reference conditions to set goals for ecosystem conditions," Gonzalez said. "Ultimately, cutting carbon pollution from cars, burning coal, livestock and other human sources that cause climate change remains the fundamental solution to reduce fire risks and protect our national parks."

Publication details

Patrick Gonzalez et al, Climate change increases risks of wildfire and biome shifts in United States national parks in California, Environmental Research Letters (2026). DOI: 10.1088/1748-9326/ae89cf

Who's behind this story?

Swati Mestri

Swati Mestri

Swati Mestri holds a bachelor's degree in Electronics Engineering and has worked as a content editor since 2019. She has experience editing research documents across technology, health care, and materials science, and has a particular interest in technology and space. Full profile →

Robert Egan

Robert Egan

Bachelor's in mathematical biology, Master's in creative writing. Well-traveled with unique perspectives on science and language. Full profile →

Citation: Climate change increases wildfire risks in Yosemite and other national parks (2026, July 30) retrieved 30 July 2026 from https://phys.org/news/2026-07-climate-wildfire-yosemite-national.html

This document is subject to copyright. Apart from any fair dealing for the purpose of private study or research, no part may be reproduced without the written permission. The content is provided for information purposes only.