Project Grant 2503402
- Federal Project Grant Award Summary The University of Florida received a $150,632 Project Grant award dated July 15, 2025, from the National Science Foundation (NSF) Division of Chemical, Bioengineering, Environmental, and Transport Systems under the Engineering program (CFDA 47.041). This collaborative research initiative, scheduled for completion by June 30, 2028, develops next-generation Lagrangian models for predicting the behavior of deforming and interacting droplets in sprays. The primary...
- Federal Project Grant Award Summary Florida State University's Sponsored Research Administration Division received a $500,000 project grant from the National Science Foundation (NSF) Division of Chemical, Bioengineering, Environmental, and Transport Systems under the Engineering program (CFDA 47.041), effective September 1, 2025, through August 31, 2028. This award funds fundamental research investigating locomotion dynamics in yield stress fluids—gel-like materials that behave as solids below...
- Federal Grant Award Summary The University of South Carolina received a $199,999 Project Grant from the National Science Foundation's Division of Chemical, Bioengineering, Environmental, and Transport Systems (CFDA 47.041) effective July 1, 2025, through June 30, 2027. This award supports research on controlling flow boiling instability in divergent microchannels utilizing secondary flow mechanisms. The project delivers computational and experimental modeling research designed to suppress...
- Federal Grant Award Summary The University of Florida's Division of Sponsored Research received a $168,000 Project Grant award from the Office of Naval Research (ONR) under the Basic and Applied Scientific Research program (CFDA 12.300), effective October 1, 2025 through September 30, 2028. The award supports a research initiative titled "Machine Learning-Driven Decoding of Thin Liquid Film Hydrodynamics in Microchannel Flow Boiling," which aims to advance fundamental understanding...
- Federal Grant Award Summary Florida State University received a $315,000 Project Grant from the National Science Foundation (NSF) Division of Civil, Mechanical, and Manufacturing Innovation under the Engineering program (CFDA 47.041), effective September 1, 2025, through August 31, 2028. The award supports collaborative research to develop an intelligent system capable of detecting manufacturing anomalies in zero-shot learning settings by leveraging textual and visual information embedded in...
- Federal Grant Award Summary The National Science Foundation (NSF) Engineering program (CFDA 47.041), administered through the Division of Civil, Mechanical, and Manufacturing Innovation, awarded $299,999 to the University of Florida for an Early-Concept Grant for Exploratory Research (EAGER) project beginning July 1, 2025, and concluding June 30, 2027. This award supports the development of advanced risk assessment and mitigation tools designed to enhance the resilience of the national supply...
- Federal Grant Award Summary The University of North Carolina at Charlotte received a $342,479 Project Grant award dated December 15, 2025, from the National Science Foundation (NSF) Division of Chemical, Bioengineering, Environmental, and Transport Systems under the Engineering program (CFDA 47.041). This collaborative research initiative, scheduled for completion by November 30, 2026, focuses on advancing the fundamental understanding of liquid-vapor interfacial instabilities in flow boiling...
- Federal Grant Award Summary The University of Florida's Division of Sponsored Research received a $175,231 CAREER Award from the National Science Foundation (NSF) Division of Chemical, Bioengineering, Environmental, and Transport Systems (CFDA 47.041) effective January 1, 2026, with completion targeted for June 30, 2026. This project grant supports fundamental research aimed at deciphering proton transport mechanisms through atomically thin, two-dimensional (2D) materials such as graphene and...
- Federal Grant Award Summary Florida Institute of Technology Inc. received a $198,529 Project Grant from the National Science Foundation (NSF) Division of Chemical, Bioengineering, Environmental, and Transport Systems under the Engineering program (CFDA 47.041), awarded September 1, 2025, with completion targeted for August 31, 2027. This Early Research Initiative (ERI) grant supports the development of advanced numerical simulation tools and experimental validation methods for modeling turbulent...
- Federal Project Grant Award Summary The University of Florida received a $3.0 million project grant from the National Science Foundation (NSF) Engineering program (CFDA 47.041) awarded January 1, 2026, with completion scheduled for December 31, 2028. The TRAILBLAZER project will develop advanced biosensing technology that leverages living cell crystals to detect pathogens, toxins, and biological/chemical threat agents for applications in environmental monitoring, healthcare, and national...
The University of Florida received a $300,000 EAGER (Early-Concept Grants for Exploratory Research) award from the National Science Foundation's Division of Chemical, Bioengineering, Environmental, and Transport Systems under the Engineering program (CFDA 47.041) to develop predictive machine learning models for microchannel flow boiling systems. The project, which commenced May 1, 2025 and concludes April 30, 2027, will deliver a Parametrized Hybrid Physics-Informed Neural Network (PH-PINN) designed to predict the transition of bubble flow regimes in microchannels from small, separated bubbles to elongated, merged bubbles. This research integrates high-speed experimental data, computational simulations, and machine learning techniques to create rapid predictive capabilities across varying operating conditions, addressing critical thermal management challenges in high-performance computing, power electronics, and renewable energy applications. The research deliverables will advance microchannel cooling system design by moving beyond trial-and-error methodologies to enable more efficient and reliable thermal management solutions. Through combining fundamental thermodynamics with advanced computational techniques, the project will produce novel predictive models that capture complex multiphase interactions in bubbly flow without requiring extensive computing resources. The research will also support student training in interdisciplinary areas spanning fluid dynamics, artificial intelligence, and thermal management, contributing to workforce development in emerging engineering fields critical to next-generation thermal systems.Federal Project Grant Award Summary
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $300.0k | 8/21/25 |