Potential and practical use of computational fluid dynamics in refractory design
Refractories are the backbone of numerous high-temperature manufacturing processes. These materials serve as the barrier between molten materials and the walls of the containing vessel, which exposes them to a complex variety of wear mechanisms that affect their durability.
Recent advancements in computer modeling and simulation techniques have helped shed light on refractory wear mechanisms.1 Computational fluid dynamics (CFD) modeling specifically has found use in this field.