Seoul National University · 工学
Professor Chongam Kim's research lab specializes in high-order numerical methods and large-scale simulations for complex fluid dynamics, with a focus on developing accurate, stable, and efficient computational tools for engineering applications. The lab pioneers advanced discontinuous Galerkin methods and high-fidelity solvers tailored for scale-resolving simulations over complex geometries, particularly in aerospace and turbomachinery flows. Their work emphasizes shock stability, numerical robustness, and high-performance computing to enable practical deployment of high-order methods in real-world design and analysis. The lab also actively contributes to open-source software development, promoting accessibility and reproducibility in computational fluid dynamics research.
Figures are computed from collected data and may differ slightly.
High-order methods are being recognized as powerful tools for handling scale-resolving simulations over complex geometry. However, several obstacles still block their complete applications to practical engineering problems: a compromise between accuracy and efficiency on mixed-curved meshes, inherent vulnerability to numerical oscillations, and lack of open-source high-performance solvers for researchers. To address these issues, we present Deneb, an open-source high-order accurate numerical sol
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