Project Grant 2443484
- This $347,379 federal Project Grant award from the National Science Foundation's (NSF) Engineering program (CFDA 47.041) aims to investigate the transport and aggregation of non-volatile particles in drying colloidal sessile drops. The award supports research to examine the motion of particles suspended in evaporating droplets and link the particle transport to the final deposition patterns. The planned studies include high-fidelity numerical simulations and theoretical analyses to understand...
- This National Science Foundation (NSF) Engineering program (CFDA 47.041) Project Grant award of $230,000 to Yale University aims to advance the understanding of how soft, deformable particles such as oil droplets and cells move through complex environments consisting of narrow constrictions and obstacles. The research will combine carefully designed experiments and advanced computer simulations to develop predictive models for the flow and interaction of deformable particles with their...
- This Project Grant award of $329,956, provided by the National Science Foundation's Engineering program (CFDA 47.041), supports collaborative research on cohesive immersed granular flows. The project aims to develop a quantitative framework connecting particle-level cohesion to the macroscopic flow and rheology of immersed granular materials, such as river and seabed sediments and industrial slurries. The research will integrate laboratory experiments and particle-resolved numerical...
- This Project Grant award from the National Science Foundation's (NSF) Engineering program (CFDA 47.041) is for a collaborative research effort on the behavior of cohesive immersed granular materials. The $330,000 award to the University of California, Santa Barbara will integrate laboratory experiments and particle-resolved numerical simulations to develop a quantitative framework connecting particle-level cohesion to the macroscopic flow and rheology of materials like river/seabed sediments and...
- The National Science Foundation (NSF) Engineering program awarded a $425,653 project grant to Brown University to conduct research on the "INERTIO-CAPILLARY DYNAMICS OF PARTICLES AT INTERFACES". The 5-year grant supports integrated experimental and theoretical work to advance the understanding of how solid particles move at fluid interfaces, which has important implications for applications in areas like pollution control, manufacturing, biotechnology, and robotics. The research will...
- This National Science Foundation (NSF) Engineering program (CFDA 47.041) Project Grant award provides $300,000 in funding to the Colorado School of Mines to conduct collaborative research on the relationship between the structure of two-dimensional particle films at fluid-fluid interfaces and mass transport across those films. The research aims to understand how the organization and heterogeneity of sheet-like particles on liquid surfaces impact the movement of molecules between different...
- The National Science Foundation (NSF) awarded a $390,000 Project Grant under the Engineering program (CFDA 47.041) to Brandeis University. The goal of this 3-year project, from August 2025 to July 2028, is to develop new strategies for designing and synthesizing multicomponent crystalline materials by arranging microscopic colloidal particles. The researchers will use experiments and computer simulations to investigate the assembly kinetics of these materials and engineer reconfigurable...
- This federal Project Grant award from the National Science Foundation's Engineering program (CFDA 47.041) provides $120,000.00 to the University of Maryland, College Park to conduct research on the "CAREER: CAPILLARY FLOWS OF PARTICULATE SUSPENSIONS." The project will characterize and model the role of interfaces in the dynamics of suspension flows, with a focus on understanding how solid particles can destabilize thin liquid films and impact the transport and deposition of...
- This Project Grant award from the National Science Foundation's (NSF) Engineering program (CFDA 47.041) provides $350,000.00 to The Trustees of Princeton University to conduct collaborative research on the design, kinetics, and reconfigurable assembly of multicomponent crystals. The goal is to understand how to precisely arrange microscopic colloidal particles to create new materials with customizable properties. The project will use experiments and computer simulations to develop new strategies...
- This $450,000 Project Grant award from the National Science Foundation's (NSF) Engineering program (CFDA 47.041) to Purdue University will support research to characterize the motion and orientation of non-spherical particles in viscoelastic fluids. The research will involve microfluidic experiments, simulations, and theoretical modeling to quantify the interplay between lift forces and particle orientation for different flow rates, particle geometries, fluid properties, and channel confinement....
This Project Grant award from the National Science Foundation (CFDA 47.041 - Engineering) to Yale University provides $610,000.00 in funding for research on the effects of chemical gradients on the motion of colloidal particles in porous media. The project, titled "CAREER: SOLUTE-MEDIATED TRANSPORT OF COLLOIDS IN POROUS MEDIA", aims to use a combination of experiments, numerical simulations, and theoretical modeling to better understand and predict the behavior of microscopic colloidal particles suspended in flows through porous media. This research has applications in areas such as microplastic spreading in soil, drug delivery, and energy extraction from salinity gradients. The project will also integrate the research with education and outreach activities, involving high school and undergraduate students in demonstrating related experimental concepts.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $610.0k | 5/30/25 |