Time-Varying Data Output
This simulation video demonstrates Barracuda Virtual Reactor’s capability to vary data output speed over time, a feature introduced in version 23.1.
This simulation video demonstrates Barracuda Virtual Reactor’s capability to vary data output speed over time, a feature introduced in version 23.1.
This simulation video demonstrates one of Barracuda Virtual Reactor version 23.1’s new features, the Radl-Sundaresan drag model.
This simulation video demonstrates Barracuda Virtual Reactor’s capability to model bubble coalescence and breakup in multiphase system, a feature introduced in version 23.1.
The 14th International Conference on Circulating Fluidized Bed Technology will be held Taiyuan, China between July 21-24, 2024. The CFB-14 conference seeks to bring together prominent and young researchers, educators…
As I get more familiar with Barracuda Virtual Reactor, I am starting to appreciate the remarkable optimization of the solver to run efficiently on parallel GPUs. Coming from the ANSYS ecosystem, I can notice the vast difference in run times for particle-gas flow systems.
Pramod Narayan, new hire
Senior CFD Engineer
CPFD Software
CPFD will host a webinar on Wednesday, November 8, 2023 at 10 am CST: Getting Started with Virtual Reactor 23.1. Register for the webinar to join us and learn about…
CPFD Software has been invited to speak at BASF’s “Turnaround risk reduction through FCCU simulation” webinar at 11:00 AM CDT on October 17th, 2023. Our own Peter Loezos, VP of Engineering,…
CPFD’s Peter Blaser will give an invited guest lecture about “Simulation of Industrial-Scale Fluidized Beds and Fluid-Particle Systems” on Thursday, February 8, at the PSRI Fluidization Seminar, taking place February…
Frederik Zafiryadis discussed why his team chose Barracuda Virtual Reactor, instead of tools such as DEM, during Rescale’s Increase Performance & Accelerate Barracuda Virtual Reactor Simulations in the Cloud webinar.
Frederik Zafiryadis
Partner
Aerotak
This video is part of set of simulations for a novel, fluidised-bed-based plastic recycling system. In this simulation, particle flow through an L valve is studied.