Project Grant 2318717
- Summary of Federal Project Grant Award 2318717 The National Science Foundation's Engineering Directorate (CFDA 47.041) awarded $799,430 to the University of California, Davis, effective October 1, 2025, through July 31, 2027, to conduct collaborative research examining the effects of surface-fuel attributes and forest-thinning patterns on wildfire behavior, carbon storage, and forest restoration outcomes. The project addresses a critical gap in quantitative understanding of how mechanical...
- GOOD FIRE: Enhance Spatial and Temporal Efficacy of Prescribed Fire and Managed Wildfire Use The National Science Foundation's Integrative Activities program (CFDA 47.083) awarded $4.0 million to Boise State University on September 1, 2025, to advance knowledge and create decision-support tools for prescribed burns and managed wildfire use across the Western United States. Led by Boise State in partnership with the University of New Mexico, Navajo Technical University, Northwest Nazarene...
- The U.S. Department of the Interior's Bureau of Land Management, through the Joint Fire Science Program (CFDA 15.232), awarded a $490,274 Cooperative Agreement to Colorado State University. The goal of this multi-year project is to assess the tools, methodologies, and governance practices that can be used to mitigate the impacts of large wildfires in the western United States, such as watershed impairment and habitat recovery for critical species. The research will involve a literature review,...
- This $636,200 Cooperative Agreement award from the U.S. Department of the Interior's Bureau of Land Management, through the Joint Fire Science Program (CFDA 15.232), will support research to address knowledge gaps about the effective duration and impacts of fuel reduction treatments (mechanical thinning, prescribed fire) in mixed-conifer forests across the interior Pacific Northwest. The project will leverage existing data from the Fire and Fire Surrogates study that was burned in subsequent...
- This National Science Foundation (NSF) Biological Sciences program (CFDA 47.074) Project Grant award of $176,388 to Oregon State University (OSU) aims to quantify the production of pyrogenic carbon (charcoal) during wildfires in the temperate rainforests of the Pacific Northwest region and examine how this altered carbon affects soil carbon cycling during ecosystem regeneration. The study will leverage a unique dataset on the 2023 Lookout Fire in the H.J. Andrews Experimental Forest to (i)...
- This $642,666 National Science Foundation Division of Polar Programs project grant will fund research into fire-biotic disturbance interactions and their sensitivity to climate change in the North American boreal biome. The Cary Institute of Ecosystem Studies, Inc. will use computer simulations to better understand the impacts and threats of new pests, herbivores, and diseases in Alaskan boreal forests, and how these disturbances may interact with fire and climate to alter carbon storage. The...
- The U.S. Department of the Interior's Bureau of Land Management, through the Joint Fire Science Program (CFDA 15.232), has awarded a $499,850 cooperative agreement to Colorado State University to conduct research on the landscape-level effects of fuel treatments on wildfire activity, behavior, and suppression operations. The 3-year project aims to: (1) quantify how landscape-level fuel treatments influence daily area burned, fire behavior observations, and fire severity; (2) analyze how fuel...
- This National Science Foundation (NSF) Biological Sciences (CFDA 47.074) Project Grant award of $1,674,172 to the West Virginia University Research Corporation aims to deepen the understanding of forest-based climate solutions (FBCS) in the Eastern United States. The key research activities include: Quantifying the impacts of common forest management practices on carbon storage, climate resilience, and other co-benefits through a network of long-term forest management plots. Surveying small...
- The University of California, Irvine (UC Irvine) was awarded a $518,389 Project Grant from the National Science Foundation (NSF) Division of Chemical, Bioengineering, Environmental, and Transport Systems under the Engineering program (CFDA 47.041). The goal of this 4-year project is to develop metrics for assessing how surface fuel attributes resulting from forest management practices, such as mechanical thinning and mastication, impact wildfire behavior, carbon storage, and forest...
- FIRE-NET Project Grant Summary The National Science Foundation's Office of Integrative Activities awarded $2.5M to the University of Colorado under the Geosciences program (CFDA 47.050) on January 1, 2026, for the FIRE-NET initiative, which will develop an integrated framework for assessing fast fire risk across the western United States. The project, which runs through December 31, 2030, will produce a comprehensive "fast fire risk" framework that synthesizes expertise from natural...
ECO-CBET: COLLABORATIVE RESEARCH: EFFECT OF SURFACE-FUEL ATTRIBUTES AND FOREST-THINNING PATTERNS ON WILDFIRE, CARBON STORAGE, AND ADVANCING FOREST RESTORATION -2318717 (COBIAN). IN RECENT YEARS, HIGH-SEVERITY WILDFIRES HAVE SEVERELY DAMAGED FORESTED MOUNTAIN WATERSHEDS THAT STORE CARBON, SUPPLY WESTERN-STATES? WATER, AND PROVIDE MANY CO-BENEFITS. WHILE PERIODIC LOW- TO MEDIUM-SEVERITY WILDFIRES ARE A NATURAL PART OF WESTERN U.S. FORESTS, TOO MUCH OF THE AREA IS BURNING AT HIGH SEVERITY OWING TO EXCESSIVE FUEL LOADS AND A WARMING CLIMATE. THEREFORE, A CRITICAL GOAL OF FOREST MANAGEMENT IS OFTEN THE INTRODUCTION OF PRACTICES DESIGNED TO REDUCE THE RISK OF HIGH SEVERITY FIRES. THESE PRACTICES, KNOWN COLLECTIVELY AS FOREST RESTORATION, INVOLVE THINNING AND REMOVING OR MASTICATING THE LESS-FIRE-RESISTANT, SMALLER TREES, WHILE LEAVING LARGER, MORE WIDELY SPACED TREES. A COMMON RESTORATION APPROACH IS APPLYING MECHANICAL THINNING FOLLOWED BY MASTICATION WHICH CHANGES THE FOREST-CANOPY STRUCTURE AND SURFACE-FUEL LOADING AND CHARACTERISTICS. WHILE IT IS KNOWN THAT CHANGING THE ARRANGEMENT AND DENSITY OF TREES AND OTHER VEGETATION THROUGH MASTICATION AFFECTS FIRE BEHAVIOR, THERE IS A LACK A QUANTITATIVE UNDERSTANDING OF HOW ATTRIBUTES OF MASTICATED FUELS AFFECT SUBSEQUENT FIRE SEVERITY. THE GOAL OF THIS PROJECT IS TO DEVELOP METRICS OF THE IMPACT OF FUEL TREATMENTS ON FIRE BEHAVIOR ACROSS A RANGE OF SPATIAL AND TEMPORAL SCALES. THIS PROJECT WILL CONTRIBUTE TO IMPROVED UNDERSTANDING OF HOW SURFACE-FUEL ATTRIBUTES, RESULTING FROM MANAGEMENT DECISIONS, INFLUENCE FIRE BEHAVIOR AND SEVERITY AND THUS FOREST BIOMASS CARBON STORAGE. MECHANICAL THINNING FOLLOWED BY MASTICATION CHANGES THE FOREST-CANOPY STRUCTURE AND SURFACE-FUEL LOADING AND CHARACTERISTICS. WHILE THESE CHANGES CAN IMPACT FIRE BEHAVIOR SIGNIFICANTLY, THEIR SENSITIVITIES TO THE TYPE AND DEGREE OF MASTICATION ARE NOT WELL UNDERSTOOD. THE THREE MAIN GOALS OF THE STUDY ARE: (1) TO ESTABLISH THE IMPORTANCE OF HETEROGENEOUS AND MULTISCALE SURFACE-FUEL LOADINGS AND ATTRIBUTES, FOLLOWING MECHANICAL FUEL TREATMENTS, ON THE TEMPERATURE, FLAME LENGTH, AND SPREAD OF FIRE AS THESE FUELS BURN; (2) TO DEVELOP AND ASSESS PREDICTIVE TOOLS FOR WILDFIRE SEVERITY AND SPREAD IN THE FOREST GIVEN THESE DIFFERENT FUEL ATTRIBUTES, UNDER CONTRASTING MICRO-METEOROLOGICAL CONDITIONS; AND (3) TO DEMONSTRATE CARBON-STORAGE AND RELATED BENEFITS FROM DIFFERENT FUEL TREATMENTS DESIGNED TO REDUCE THE OCCURRENCE AND IMPACTS OF HIGH-SEVERITY WILDFIRES. THE STUDY WILL USE BENCH-SCALE COMBUSTION EXPERIMENTS, FIELD MEASUREMENTS INVOLVING CONTROLLED BURNS IN THINNED AND MASTICATED STANDS IN A MIXED-CONIFER FOREST, AND MODELING OF WILDLAND FIRE AND CARBON STORAGE. RESULTS FROM EXPERIMENTS, MODELING, AND ASSESSMENT OF FIELD-SCALE CONTROL BURNS WILL BE USED TO IDENTIFY KEY DRIVERS OF FIRE SEVERITY IN GROUND FUELS FOLLOWING THINNING. PRIMARY CONTRIBUTIONS OF THE STUDY WILL BE IMPROVED UNDERSTANDING OF HOW SURFACE-FUEL ATTRIBUTES, RESULTING FROM MANAGEMENT DECISIONS, INFLUENCE FIRE BEHAVIOR AND SEVERITY AND THUS FOREST BIOMASS CARBON STORAGE. RESULTS WILL IMPROVE MODELING OF FLAME LENGTH, FIRE SPREAD AND CARBON BALANCE AND STORAGE IN THE LITTER, MINERAL SOIL, AND DEEPER REGOLITH. THIS RESEARCH WILL ENGAGE DECISION MAKER AND STAKEHOLDER PARTNERSHIPS WITH ORGANIZATIONS THAT ARE ADVANCING LANDSCAPE RESTORATION, PROVIDING MUCH-NEEDED IMPROVEMENTS IN PROJECTION OF HOW THEIR INVESTMENTS MAY AFFECT WILDFIRE SEVERITY. THIS AWARD REFLECTS NSF'S STATUTORY MISSION AND HAS BEEN DEEMED WORTHY OF SUPPORT THROUGH EVALUATION USING THE FOUNDATION'S INTELLECTUAL MERIT AND BROADER IMPACTS REVIEW CRITERIA.- SUBAWARDS ARE NOT PLANNED FOR THIS AWARD.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | ($799k) | 4/14/26 | ||
| Not listed | $1.2m | 8/29/23 |