Application Model Download: Ammonia Co-Firing in an Industrial CFB Combustor
Downloads Ammonia_Cofiring.zipThis zip file contains all the necessary files for running the Ammonia Co-Firing in an Industrial CFB Combustor application model extension.
Downloads Ammonia_Cofiring.zipThis zip file contains all the necessary files for running the Ammonia Co-Firing in an Industrial CFB Combustor application model extension.
Downloads Beginning_Stage_TRISO.zip End_Stage_TRISO.zip
This application model uses Barracuda Virtual Reactor to simulate sand and water flowing through a downhole sand screen.
This application model extends CPFD Software’s industrial-scale cement calciner model to simulate co-firing with municipal sludge.
This application model uses Barracuda Virtual Reactor to simulate proppant transport and settling in a single hydraulic fracture, including the interaction of a realistic proppant size distribution with slickwater. The validated Barracuda results also provide training data for a Graph Neural Network reduced-order model (GNN-ROM), which closely reproduces the predicted bed profiles at a fraction of the computational cost.
This application model uses Barracuda Virtual Reactor to simulate the evaporation of multi-component FCC feed across an industrial-scale riser.
This application model uses Barracuda Virtual Reactor to simulate the filtration of formation sand through a standalone sand screen in a wellbore geometry. The sand screen is represented as a baffle with a particle size dependent pass-through probability rather than resolved geometrically, allowing field scale simulation of screen performance. The simulation captures the size resolved retention behavior of the screen, comparing inlet and outlet particle size distributions to quantify how effectively the screen filters a realistic, polydisperse formation sand, providing a framework for evaluating screen selection and completion design ahead of deployment.