Conveners
Wednesday Afternoon
- Didier Mazon (CEA)
Turbulent transport in magnetically confined plasmas remains one of the most challenging phenomena in fusion energy research, driven by micro-instabilities that degrade confinement and operational performance. Gyrokinetic simulation codes, such as GKW (Gyrokinetic Workshop), are essential for studying these effects but produce highly complex, multi-dimensional datasets - often in the order of...
This report focuses on technological innovations in visualization within magnetic confinement fusion research, systematically elaborating on the groundbreaking applications of cinematic dynamic simulation, extended reality (XR) interaction, and intelligent 3D reconstruction in device modeling, theoretical demonstration, and scientific communication.
Based on high spatiotemporal resolution...
Understanding plasma behavior throughout the entire duration of a pulse is critical for achieving the objectives of ITER and future fusion devices. Plasma parameters such as temperature, density, current profiles, and impurity content evolve dynamically during a discharge, influencing key aspects of performance including energy confinement, stability, and fusion power production. Analyzing...