• Modeled a 1 MW floating solar PV system using SAM, estimating ~1.6M kWh annual energy production
• Evaluated economic feasibility, including system cost (~$2.4M) and payback period (~9.6 years)
• Assessed structural, environmental, and implementation considerations for real-world deployment
• Evaluated high- and low-temperature DAC systems for CO₂ capture and climate mitigation
• Modeled system performance, energy requirements, and scalability for potential deployment in Canada
• Developed feasibility insights based on mechanical design, sustainability, and economic considerations
• Conducted CFD simulations using ANSYS Fluent to analyze fluid flow and heat transfer behavior
• Evaluated pressure, velocity, and temperature variations under different geometric conditions
• Identified relationships between flow restrictions, turbulence, and heat transfer performance
• Conducted CFD simulations using ANSYS Fluent to analyze airflow over multiple rooftop geometries
• Evaluated velocity profiles and turbulence patterns to assess system performance
• Identified optimized geometries improving airflow efficiency and energy potential