Project Grant 2144802
- Federal Project Grant Award Summary The National Science Foundation's Division of Chemical, Bioengineering, Environmental, and Transport Systems (CBETS) awarded $258,654 to the Regents of the University of California at Riverside under the Engineering program (CFDA 47.041) to support a Faculty Early Career Development (CAREER) project beginning September 1, 2025, and concluding June 30, 2028. The primary research deliverables focus on advancing fundamental understanding of contact line...
- This National Science Foundation (NSF) Division of Chemical, Bioengineering, Environmental, and Transport Systems award, under the NSF Engineering program (CFDA 47.041), provides $556,861 to the Georgia Tech Research Corporation to conduct research on fluid dynamics in confined geometries, specifically related to heat management in high-power electronic devices. The research aims to unravel the enigma of hydraulic jumps, a phenomenon observed in liquid flows, and understand how it may impact the...
- This National Science Foundation (NSF) Project Grant award, funded under the NSF Directorate for Engineering (CFDA 47.041), provides $199,680 to Texas A&M University-Corpus Christi to study the fundamental mechanisms of ultrafast liquid film evaporation. The research aims to develop innovative optical techniques to enable real-time, nanoscale measurement and analysis of evaporating liquid thin films. Key goals include: (i) calibrating nanoscale thin film measurement using a graphene/gold...
- This National Science Foundation (NSF) project grant under the Engineering (CFDA 47.041) program, awarded to Georgia TECH Research Corp, aims to develop a deep understanding of the behavior and interactions of novel multicomponent fluid mixtures for enhanced heat transfer in electronic and industrial systems. The $499,232 award, spanning from August 1, 2024 to July 31, 2027, will investigate the stability and properties of phase change material (PCM) particles suspended in liquid gallium alloys,...
- This Project Grant award was provided by the National Science Foundation (NSF) under the "Engineering" program (CFDA 47.041) to the University of Maryland, College Park. The $100,000 award, effective September 1, 2023, will fund a collaborative research project focused on developing an efficient and stable cooling solution for high power-density electronic devices through the use of partial flow-boiling processes with microstructured surfaces and ultrasonics. The key products and...
- The National Science Foundation awarded a $533,897 Project Grant to the Texas A&M Engineering Experiment Station (Tees) through the Engineering program (CFDA 47.041). The grant supports research from June 2021 to May 2026 titled "CAREER: ULTRAFAST LOCALIZED PLASMAS IN DENSE FLUIDS: FROM FUNDAMENTAL PHASE-CHANGE PHENOMENA AND DIAGNOSTICS TO EFFICIENT HEAT AND MASS TRANSPORT." The Tees project will conduct research on using ultrafast localized plasmas in dense fluids to study...
- This three-year, $141,442 National Science Foundation project grant supports research at William Marsh Rice University to experimentally and numerically study oscillating multiphase flows and heat transfer in porous media. The research aims to improve understanding of these phenomena to enhance energy technologies like geothermal systems, carbon storage, batteries, and hydraulic fracturing. The university will develop experimental platforms using neutron imaging at Oak Ridge National...
- This $332,781 National Science Foundation project grant supports research at the University of Washington to develop a more complete understanding of evaporation processes in liquid films. The grant is part of the NSF Engineering program (CFDA 47.041) and will fund research using the International Space Station to reveal physical mechanisms influencing film evaporation stability, thermal transport, and transient effects that are difficult to observe under normal gravity conditions. Investigators...
- Federal Project Grant Award Summary The National Science Foundation's Division of Chemical, Bioengineering, Environmental, and Transport Systems awarded a CAREER (Faculty Early Career Development) Project Grant of $204,635 to Texas A&M Engineering Experiment Station on November 15, 2025, with completion targeted for August 31, 2026. Under the Engineering program (CFDA 47.041), this award supports research into vapor-liquid separation processes for sustainable condensation heat transfer....
- This National Science Foundation (NSF) Engineering program (CFDA 47.041) Project Grant award, totaling $560,000, will support research at the University of California, Berkeley (UC Berkeley) to develop new methods for investigating nanoscale thermal transport phenomena. The research will combine ultrafast optical measurement techniques with nanoscale spatial resolution to probe energy carriers, such as electrons and phonons, in both equilibrium and non-equilibrium regimes. The goal is to...
CAREER: UNCOVER CONTACT LINE DYNAMICS DURING THIN FILM EVAPORATION ON MICRO/NANO-ENGINEERED SURFACES WITH COMBINED VELOCIMETRY, THERMOMETRY, AND INTERFEROMETRY -COMPUTERS AND ELECTRONICS WITH EVER-INCREASING POWER DENSITIES HAVE BECOME AN INDISPENSABLE PART OF OUR DAILY LIFE TO SUPPORT OUR LEARNING, COMMUNICATION, DRIVING, AND OTHER APPLICATIONS. EFFECTIVE THERMAL MANAGEMENT TECHNOLOGIES ARE ESSENTIAL TO COOL THESE DEVICES TO A SAFE TEMPERATURE TO SUSTAIN THEIR HIGH PERFORMANCE. THIN FILM EVAPORATION, BASED ON CONTINUOUS EVAPORATION OF VERY THIN FILMS OF LIQUID COOLANT, IS A PROMISING COOLING STRATEGY DUE TO ITS SIMPLE DESIGN, HIGH COOLING CAPACITY, AND HIGH STABILITY. BY INCORPORATING MICRO/NANO-STRUCTURES SUCH AS MICRO-PILLARS AND NANO-PORES, THE COOLING CAPACITY OF THIN FILM EVAPORATION HAS BEEN SIGNIFICANTLY IMPROVED IN RECENT YEARS BUT IS STILL MUCH LOWER THAN THEORY PREDICTIONS, DUE TO THE LACK OF FUNDAMENTAL UNDERSTANDING, ESPECIALLY THE DETAILED FLOW AND THERMAL CHARACTERISTICS AT MICROSCOPIC AND NANOSCOPIC SCALES. THIS CAREER PROJECT SEEKS TO STUDY FLUID FLOW AND THERMAL TRANSPORT PROCESSES AT EVAPORATING INTERFACES BY ACCURATELY MEASURING THE FLOW SPEED, FILM SHAPE AND TEMPERATURE WITHIN THIN COOLANT FILMS THAT ARE TYPICALLY A FEW MICROMETERS THICK. THE KNOWLEDGE GAINED WILL BE INTEGRATED INTO EDUCATIONAL AND OUTREACH ACTIVITIES BY ESTABLISHING A THERMAL-FLUID INSTRUCTIONAL LABORATORY AT MONTANA STATE UNIVERSITY AND CREATING EDUCATIONAL MATERIALS TARGETING THE GENERAL PUBLIC AND SCHOOL CHILDREN WITH A SPECIAL EMPHASIS ON THOSE FROM RURAL COMMUNITIES AND UNDERREPRESENTED GROUPS. THE OVERARCHING GOAL OF THIS PROJECT IS TO ADVANCE THE FUNDAMENTAL UNDERSTANDING OF THE FLOW, THERMAL TRANSPORT, AND CONTACT LINE DYNAMICS AT EVAPORATING INTERFACES VIA QUANTIFYING 3D VELOCITY FIELDS, INTERFACE TEMPERATURE, AND INTERFACE PROFILE, ENABLED BY INNOVATIVE EXPERIMENTS AND MODELING EFFORTS. SPECIFICALLY, THE PROJECT TEAM WILL (I) EMPLOY COMBINED ASTIGMATISM PARTICLE TRACKING VELOCIMETRY, FLUORESCENCE THERMOMETRY AND INTERFERENCE MICROSCOPY TO PERFORM MEASUREMENTS ON MICRO-STRUCTURED SURFACES, (II) QUANTIFY FILM TEMPERATURE AND MENISCUS DYNAMICS WITHIN NANOPORES USING NANOSCALE QUANTUM DOT THERMOMETERS AND ENVIRONMENTAL SCANNING ELECTRON MICROSCOPY, AND (III) DEVELOP A MICROSCALE MODEL FOR THIN FILM EVAPORATION ON MICRO-STRUCTURED SURFACES WITH IMPROVED ACCURACY BY INCORPORATING MARANGONI FLOWS. THE RESEARCH WILL CHARACTERIZE THE WICKING DYNAMICS, LIQUID-VAPOR INTERFACE TEMPERATURE, CURVATURE AND MENISCUS DYNAMICS OF THIN EVAPORATING FILMS WITH HIGH SPATIAL AND TEMPORAL RESOLUTIONS, WHICH WILL ALLOW PRECISE DETERMINATION OF THE ACCOMMODATION COEFFICIENT AND THE QUANTIFICATION OF MARANGONI EFFECTS, THUS FILLING IN CURRENT KNOWLEDGE GAPS AND INFORMING THE NEXT GENERATION OF PREDICTIVE TOOLS. THIS PROJECT IS JOINTLY FUNDED BY THE THERMAL TRANSPORT PROCESSES PROGRAM AND THE ESTABLISHED PROGRAM TO STIMULATE COMPETITIVE RESEARCH (EPSCOR). 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.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | ($171k) | 8/28/25 | ||
| Not listed | $297.9k | 3/9/22 |