Portfolio

Selected engineering projects covering high-power thermal-fluid systems, liquid-metal flows, electromagnetic multiphysics, numerical model development, and data-driven engineering tools.

High-Power Thermal-Fluid and Multiphysics Systems

Analysis and design of engineering systems exposed to intense thermal loads, involving liquid-metal and free-surface flows, multiphase CFD, conjugate heat transfer, and electromagnetic effects.

ElectroJetFlow

- Electrohydrodynamic Jet Flow Multiphysics Simulation

ElectroJetFlow was developed during my Ph.D. research to investigate electrohydrodynamic jets, electrospray atomization, and electrically driven multiphase flows. The project combines computational fluid dynamics, interface-capturing methods, electrostatics, and Maxwell-stress modelling to study jet formation, stability, breakup, and performance.

Visit the ElectroJetFlow project website

Electrohydrodynamic Multiphysics Modelling

Predict the deformation, instability, and breakup of electrically charged liquid jets. Developed a custom multiphase numerical model coupling fluid flow, electric fields, charge transport, and Maxwell forces.