Overview
Developed parametric simulation models of chemical engineering equipment. Parametric design allows for streamlined geometry modification and enhances design flexibility. The simulations were mostly solved on NYU HPC.
This research established a modular simulation pipeline for pilot plant development, allowing commonly used equipment to be simulated individually and integrated as needed. The approach facilitates efficient prototyping and optimization of chemical processes, paving the way for scalable and versatile plant design.
July 2023 – Sept 2023 Research Poster

Simulated Venturi-meter Pressure Distribution

Measured Venturi-meter Pressure Distribution

July 2024 – Sept 2024 Research Poster

Time-Dependent Large Eddy Simulation of the Stirred Tank (5 seconds)
- Paddle Angular Velocity: 6.3 rad/s
- Single-Phase, Fluid Flow Only
- 6M Domain Elements
Time-Dependent RANS Simulation with Free Surface Modeling
- Paddle Angular Velocity: 34.6 rad/s
- Two-Phase Flow, Phase Field Method
- 900K Domain Elements
