We study turbulent flows, flow instability, and cross-scale fluid dynamics using high-resolution numerical simulations — bridging fundamental fluid mechanics with real-world scientific and engineering challenges. Our focus lies in stratified turbulence, environmental fluid mechanics, and physical oceanography. Using Large-Eddy Simulation (LES) and Direct Numerical Simulation (DNS), we uncover the multiscale dynamics governing complex flow systems.
Our current research includes:
1. Fundamental stratified turbulence: deepening the physical understanding of mixing and instability in stratified sheared flows
2. Marine carbon dioxide removal (mCDR): exploring how complex environments (turbulent or sheared flows) affect sediment transport and dissolution
3. Ocean mixing: exploring internal tide-driven mixing and flow-topographic interactions