Application Model Download: Proppant Transport in Hydraulic Fractures
Downloads Proppant_Transport_Application_Model.zip This zip file contains all the necessary files for running the Proppant Transport in Hydraulic Fractures application model.
Downloads Proppant_Transport_Application_Model.zip This zip file contains all the necessary files for running the Proppant Transport in Hydraulic Fractures application model.
Downloads CementCalciner_SupportFiles.zip This zip file contains all the necessary files for running the Cement Calciner Decomposition Furnace application model.
Downloads DRI-MIDREX_application_model.zip This zip file contains all the necessary files for running the Direct Reduced Iron Shaft Furnace application model.
CPFD Software is pleased to announce the release of Barracuda Virtual Reactor® 25.1. This is a feature release with the addition of new thermal wall specifications, particle filtering with baffles,…
CPFD Software is pleased to announce the release of Barracuda Virtual Reactor® 25.0. This is a feature release with the addition of new wall impact models, improved project setup and…
This video is part of the Tecplot for Barracuda Training Videos collection. This training video shows how to calculate spatial average axial profiles from Tecplot for Barracuda using PyTecplot. It is necessary…
This video is part of the Tecplot for Barracuda Training Videos collection. This is an updated version of a previous support-site post titled: Tecplot for Barracuda – Using Isosurfaces to…
This page contains instructions for pointing clients to an on-premise RLM server. The process is the same for both Barracuda Virtual Reactor and Arena-flow. The instructions below assume that you have already…
This application model uses Barracuda Virtual Reactor to simulate solid particle erosion in a 90-degree elbow, capturing particle-wall impacts and wear patterns under varying mass loadings. The simulation demonstrates how particle collisions influence erosion severity and distribution, enabling evaluation of component durability in particulate-laden flows.
This application model provides a ready-to-use, literature-based reference for engineers studying calciner heat transfer, reaction kinetics, alternative-fuel co-processing, and carbon-capture-ready calciner designs using Barracuda Virtual Reactor.