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Mapping wildfire risk across the US, day by day

Mapping wildfire risk across the US, day by day

phys.org 25.09.2026 02:20 4 views
Wildfires can spread fastest when they tear through areas of dry vegetation. In contrast, vegetation that contains a lot of moisture can slow a wildfire's advance and give firefighting crews precious time to contain the

This article has been reviewed according to Science X's editorial process and policies. Editors have highlighted the following attributes while ensuring the content's credibility: Wildfires can spread fastest when they tear through areas of dry vegetation. In contrast, vegetation that contains a lot of moisture can slow a wildfire's advance and give firefighting crews precious time to contain the blaze.

Because dryness is such a critical driver of wildfires, a team of scientists at the U.S. National Science Foundation National Center for Atmospheric Research (NSF NCAR) is producing real-time maps of vegetation moisture across the United States and adjacent areas of Canada and Mexico. The maps, which include both living and dead vegetation (or fuel, as the wildfire community calls it), are updated hourly to daily, depending on the location.

They are available to view on a dedicated NSF NCAR webpage. The map above, for example, shows the moisture content of small dead fuels, such as twigs, on Sept. 20, 2026. It highlights especially high wildfire risk across much of the West, particularly in areas of Southern California, Nevada and Arizona, as well as more moderate risk in the Southeast and upper Midwest.

To create the maps, a team of NSF NCAR fire experts, meteorologists and machine learning specialists drew on advanced weather models and observations of land cover and the atmosphere, including data from two NASA and NOAA satellite instruments: the polar-orbiting Visible Infrared Imaging Radiometer Suites, or VIIRS, and the geostationary Advanced Baseline Imager, or ABI. This information was fed into a machine learning model, which estimates the moisture content of vegetation at a resolution as fine as 375 meters across the contiguous United States and Alaska and 750 meters in Hawaii. The team began producing the maps in 2023 and continually improves them.

This year, they added an important new feature: the ability to view the moisture content of trees, shrubs and grasses separately. This is vital because different types of plants can store moisture or dry out on widely varying time scales. A fire that rapidly consumes dry grass might behave much differently if it enters a grove of trees that are somewhat moist.

"Understanding specifically the moisture levels in these different fuels is very important," said NSF NCAR scientist Pedro Jimenez Munoz, who is leading this research. "Getting the fuel moisture content right is necessary for modeling the fires accurately and being able to identify which regions are at risk and how quickly a wildfire will spread." Provided by NSF National Center for Atmospheric Research MA in English, copy editor since 2021 with experience in higher education and health content. Dedicated to trustworthy science news.

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