CPFD Barracuda VR 17.4.0 (x64) | 484.7 mb
CPFD Software is pleased to announce the release of Barracuda Virtual Reactor 17.4, engineering software for simulation and analysis of fluidized bed reactors and other gas-solid systems. This latest release further improves speed-up and ease of use, allowing users to more quickly and easily simulate complex systems through enhanced project set-up and modification.
Barracuda Virtual Reactor 17.4 Release Notes - March 26, 2019:PU Calculation of Volume-Average ChemistryVirtual Reactor now calculates volume-average chemistry on the GPU. Timing tests show a significant speed increase over previous versions.
User-Defined Chemical Reaction Rate CoefficientsUsers are able to define reaction rate coefficients in a very powerful new way, adding a large degree of flexibility and new variables that can be used in rate coefficients, including time, location, particle residence time, relative velocity, and Reynolds number.
Output Raw Particle Data at Internal Flux PlanesPreviously available only at boundary condition flux planes, this feature expands the output of raw particle data to internal Flux Planes.
With these features and other enhancements, CPFD Software continues to advance the speed, capability, and ease-of-use of Virtual Reactor. We carry on our commitment to helping engineers meet the challenges of designing, troubleshooting, and optimizing the performance of fluidized bed reactors and other industrial gas-solid systems.
About CPFD Barracuda VR. Barracuda Virtual Reactor is specialized CFD (Computational Fluid Dynamics) simulation software used by leading engineering service providers, OEMs and manufacturers worldwide in oil refining, petrochemical, energy, and minerals processing industries to design, troubleshoot and optimize industrial fluidized bed reactors (FBRs) - improving profitability and competitive advantage through improved equipment performance, lower warranty risk and rework, higher yields, lower operating costs and longer up-time.
Virtual Reactor software is recognized as providing a unique capability to model industrial FBRs at full-scale, changing how fluidized bed reactors are traditionally designed and optimized. Virtual Reactor is able to handle both the scale and complexity of the internal operation of FBRs due its proprietary modeling technology that, unlike other CFD methods, can effectively simulate gas-solid systems containing any number of particles with any particle size distribution. Barracuda Virtual Reactor is computationally efficient and exploits low-cost parallel computing hardware enabling customers to deploy the software without requiring investment in expensive high-performance computing resources
A model of a full-scale fluidized catalytic cracking (FCC) regenerator using the Eulerian-Lagrangian CPFD method in Barracuda VR. This video illustrates the use of the Barracuda Virtual Reactor to predict the 100°F afterburn observed at the refinery. A multi-model approach is used to rule out the lift riser and spent catalyst distributor as the root cause of the asymmetric afterburn.About CPFD Software. CPFD Software is the leader in CFD simulation of large-scale gas-particle systems. We are highly focused on providing engineering simulation software tools and solutions to industry. Our software is designed specifically for use in engineering design and optimization of fluidized bed reactors, one of the most widely used processes in oil refining and manufacture of petrochemicals, and also in the clean energy sector in production of electricity, gas and liquid fuels from coal and biomass. The core technology also has application in many other industries, helping in reduction of energy costs and emissions and improvement of process efficiency and profitability.
Product: CPFD Barracuda VR
Version: 17.4.0
Supported Architectures: x64
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System Requirements: PC / Linux *
Supported Operating Systems: *
Size: 484.0 mb
MinimumOperating System: Recent 64-bit Linux, 64-bit Windows 7, 8, or 10
CPU: Any 64-bit Intel compatible from the last 5 years
Memory (RAM): 8 GB
Hard drive space: 500 GB
GPU * : NVIDIA GPU required
CUDA Compute Compatibility * : 2.0
GPU RAM * : 4 GB
RecommendedOperating System: 64-bit CentOS 6 (RHEL 6) or higher, Windows 7 Professional 64-bit
CPU: Intel Core i7-4790K or better i7/Xeon. Higher clock speed, and newer Intel architecture are better.
Memory (RAM): 32 GB or more. Faster is better.
Hard drive space: 8 TB (2x 4TB) or more
GPU * : NVIDIA GeForce GTX Titan X (Pascal)
CUDA Compute Compatibility * : 3.5 or higher
GPU RAM * : 12 GB or more
* - GPU requirements only apply if Virtual Reactor will be running in GPU parallel mode. The required GPU RAM is also dependent on the size of the simulation being run. A larger simulation will require more GPU RAM.
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