Have you ever wondered how scientists determine the burn severity of wildfire?
USGS Wildland Fire Science
Media Kit and Social Media Assets
The U.S. Geological Survey’s Wildland Fire Science Program produces information to identify the causes of wildfires, understand the impacts and benefits of both wildfires and prescribed fires, and help manage larger, catastrophic events.
Useful Materials
USGS provides valuable tools, resources, and personnel before, during, and after wildfires. Here are a few helpful pieces of content that are worth sharing to highlight what we do. These different assets can be shared by public information officers to the local communities as handouts, published online or social media as content, or reviewed to help refresh what tools are out there.
Here are a few examples of social media tiles or assets that can be shared to better explain aspects of wildland fires.









Useful Links
The USGS produces many papers, products, and research on wildland fire. Here's links to a few of our more important fire-related tools people use to stay informed about conditions before, during, and after a wildfire.
Fire Danger Forecast
Wildland Fire Trends Tool
Landfire
Monitoring Trends in Burn Severity
Wildfire Hazard and Risk Assessment Clearinghouse
Emergency Assessment of Postfire Debris Flows
Featured Scientists
There are dozens of USGS scientists that work to better understand conditions, features, or threats related to wildland fires. Here's just a few of our researchers who continually work to help keep people safe and informed.
Economics of Wildland Fire
Post-wildfire water-quality
Wildland Fire Trends Tool
Wildland Fire Science in Forests and Deserts
Integrated Wildland Fire Science
Wildland Fire on Southwestern Landscapes
Have you ever wondered how scientists determine the burn severity of wildfire?

Temporal changes in rainfall intensity-duration thresholds for debris flows in a recovering burned area
linkPost-fire debris flows are often observed during the first rainy season following a wildfire, but it is unclear how long the elevated threat of debris flow persists. We constrained a hydrologic model using field and remotely sensed measurements of soil-infiltration capacity, vegetation cover, runoff, and debris-flow activity.
Temporal changes in rainfall intensity-duration thresholds for debris flows in a recovering burned area
linkPost-fire debris flows are often observed during the first rainy season following a wildfire, but it is unclear how long the elevated threat of debris flow persists. We constrained a hydrologic model using field and remotely sensed measurements of soil-infiltration capacity, vegetation cover, runoff, and debris-flow activity.

In late March of 2021, just four miles from the edge of South Dakota's second-largest city, two wildfires sparked by human activity burned through a section of the Black Hills.
In late March of 2021, just four miles from the edge of South Dakota's second-largest city, two wildfires sparked by human activity burned through a section of the Black Hills.

A mudslide near the 2020 Dolan Fire's ignition point chopped through a chunk of California's scenic State Highway 1 in late January.
The Dolan Fire began near Big Sur on August 18th, 2020. It scarred nearly 125,000 acres before being fully contained in December.
A mudslide near the 2020 Dolan Fire's ignition point chopped through a chunk of California's scenic State Highway 1 in late January.
The Dolan Fire began near Big Sur on August 18th, 2020. It scarred nearly 125,000 acres before being fully contained in December.
Southern California's fire ecology is unlike that of anywhere else in the United States. Fire control strategies developed for mountain forests don't have the same results here. So can science help uncover new answers to help Southern California communities manage and live with wildfires?
Southern California's fire ecology is unlike that of anywhere else in the United States. Fire control strategies developed for mountain forests don't have the same results here. So can science help uncover new answers to help Southern California communities manage and live with wildfires?
Fire hazards at the urban-wildland interface: what the public expects
The U.S. Geological Survey’s Wildland Fire Science Program produces information to identify the causes of wildfires, understand the impacts and benefits of both wildfires and prescribed fires, and help manage larger, catastrophic events.
Useful Materials
USGS provides valuable tools, resources, and personnel before, during, and after wildfires. Here are a few helpful pieces of content that are worth sharing to highlight what we do. These different assets can be shared by public information officers to the local communities as handouts, published online or social media as content, or reviewed to help refresh what tools are out there.
Here are a few examples of social media tiles or assets that can be shared to better explain aspects of wildland fires.









Useful Links
The USGS produces many papers, products, and research on wildland fire. Here's links to a few of our more important fire-related tools people use to stay informed about conditions before, during, and after a wildfire.
Fire Danger Forecast
Wildland Fire Trends Tool
Landfire
Monitoring Trends in Burn Severity
Wildfire Hazard and Risk Assessment Clearinghouse
Emergency Assessment of Postfire Debris Flows
Featured Scientists
There are dozens of USGS scientists that work to better understand conditions, features, or threats related to wildland fires. Here's just a few of our researchers who continually work to help keep people safe and informed.
Economics of Wildland Fire
Post-wildfire water-quality
Wildland Fire Trends Tool
Wildland Fire Science in Forests and Deserts
Integrated Wildland Fire Science
Wildland Fire on Southwestern Landscapes
Have you ever wondered how scientists determine the burn severity of wildfire?
Have you ever wondered how scientists determine the burn severity of wildfire?

Temporal changes in rainfall intensity-duration thresholds for debris flows in a recovering burned area
linkPost-fire debris flows are often observed during the first rainy season following a wildfire, but it is unclear how long the elevated threat of debris flow persists. We constrained a hydrologic model using field and remotely sensed measurements of soil-infiltration capacity, vegetation cover, runoff, and debris-flow activity.
Temporal changes in rainfall intensity-duration thresholds for debris flows in a recovering burned area
linkPost-fire debris flows are often observed during the first rainy season following a wildfire, but it is unclear how long the elevated threat of debris flow persists. We constrained a hydrologic model using field and remotely sensed measurements of soil-infiltration capacity, vegetation cover, runoff, and debris-flow activity.

In late March of 2021, just four miles from the edge of South Dakota's second-largest city, two wildfires sparked by human activity burned through a section of the Black Hills.
In late March of 2021, just four miles from the edge of South Dakota's second-largest city, two wildfires sparked by human activity burned through a section of the Black Hills.

A mudslide near the 2020 Dolan Fire's ignition point chopped through a chunk of California's scenic State Highway 1 in late January.
The Dolan Fire began near Big Sur on August 18th, 2020. It scarred nearly 125,000 acres before being fully contained in December.
A mudslide near the 2020 Dolan Fire's ignition point chopped through a chunk of California's scenic State Highway 1 in late January.
The Dolan Fire began near Big Sur on August 18th, 2020. It scarred nearly 125,000 acres before being fully contained in December.
Southern California's fire ecology is unlike that of anywhere else in the United States. Fire control strategies developed for mountain forests don't have the same results here. So can science help uncover new answers to help Southern California communities manage and live with wildfires?
Southern California's fire ecology is unlike that of anywhere else in the United States. Fire control strategies developed for mountain forests don't have the same results here. So can science help uncover new answers to help Southern California communities manage and live with wildfires?