Funding
Combustion and Fire Systems
U.S. National Science Foundation · United States
- Posted
- July 27, 2026
TheCombustion and Fire Systemsprogram is part of the Transport Phenomena cluster, which also includes 1) theFluid Dynamicsprogram; 2) theParticulate and Multiphase Processesprogram; and 3) theThermal Transport Processesprogram.
The goal of theCombustion and Fire Systemsprogram is to create new knowledge to support advances in clean energy, climate change mitigation, a cleaner environment and public safety.
The program endeavors to createfundamental scientific knowledge that is needed for safe, clean and useful combustion applications and for mitigating the effects of fire.The program aims to identify and understand the controlling basic principles and to use that knowledge to create predictive capabilities for designing and optimizing practical combustion devices and understanding fire.
Important outcomesfor this program include:
broad-based tools — experimental, theoretical, andcomputational — that can be applied to a variety of problems in combustion technologies and fire;
science and technology for clean and efficient generation of power;
discoveries that enable clean environments (for example, by reduction in combustion-generated pollutants); and
enhanced public safety and climate change mitigation through research on wildland and building fire growth, inhibition, and suppression.
Research areas of interest for this program include:
Basic combustion science: Combustion of gas, liquid, and solid fuels over abroad range of temperatures, pressures, and compositions; combustion at supercritical conditions; advanced propulsion concepts; flame synthesis ofmaterials; integration of fuel design and combustion; control of reaction pathways; development of chemical kinetics models, analytical and numerical predictive methods, and advanced diagnostic tools.
Combustionscience related to clean energy: Increasing efficiency and reducing pollution; production and use of renewable and/or carbon-free fuels; biomass pyrolysis, gasification, and oxidation; technologies s
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