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Description

Fire Dynamics Simulator (FDS) serves as a free and open-source platform for the modeling and visualization of flows influenced by fire. This computational fluid dynamics code effectively solves a variant of the Navier–Stokes equations tailored for low-speed, thermally-driven airflow, focusing particularly on the transport of smoke and heat resulting from fires. Employing large-eddy simulation, it captures the intricacies of fire-plume dynamics and can be utilized in diverse scenarios, such as those involving wind, sprinklers, ventilation systems, and various materials that affect fire behavior. Users create scenarios by utilizing text-based input files, execute the calculations within FDS, and subsequently evaluate the output data. The simulator presents results from both FDS and CFAST simulations through advanced OpenGL-based 3D graphics, incorporating scientific visualization techniques that include animated representations of smoke and tracer particles, two- and three-dimensional shaded contours, iso-surfaces, temperature distributions, and flow vectors that display both direction and intensity. In addition to these features, FDS is continually updated to enhance user experience and functionality, making it a vital tool for researchers and safety professionals alike.

Description

PFC, which stands for Particle Flow Code, is a versatile distinct-element modeling tool offered in both two-dimensional and three-dimensional versions, known as PFC2D and PFC3D. This framework is engineered to replicate synthetic granular and solid materials by treating them as assemblies composed of rigid particles of varying sizes, which can include shapes like disks, spheres, and various forms of polyhedra. Its design affords an effective and adaptable approach to simulating the dynamics, interactions, fragmentation, flow, deformation, and failure of particle systems in fields such as geomechanics, mining, civil engineering, materials processing, and industrial design. Notably, PFC excels in scenarios where material behavior is dictated by interactions at the particle level, such as contact mechanics, bonding, friction, rearrangement, fracture, and flow, rather than relying on a continuous material mesh. Users have the capability to model bonded materials, including types like rock, concrete, or cemented soil, as well as unbound granular substances such as sand, gravel, ballast, ore, powders, and small grains. This broad applicability makes PFC an invaluable resource for researchers and engineers working with complex material behaviors.

API Access

Has API

API Access

Has API

Screenshots View All

Screenshots View All

Integrations

FireFlow Studio for FDS
OpenGL

Integrations

FireFlow Studio for FDS
OpenGL

Pricing Details

Free
Free Trial
Free Version

Pricing Details

$9,588 one-time payment
Free Trial
Free Version

Deployment

Web-Based
On-Premises
iPhone App
iPad App
Android App
Windows
Mac
Linux
Chromebook

Deployment

Web-Based
On-Premises
iPhone App
iPad App
Android App
Windows
Mac
Linux
Chromebook

Customer Support

Business Hours
Live Rep (24/7)
Online Support

Customer Support

Business Hours
Live Rep (24/7)
Online Support

Types of Training

Training Docs
Webinars
Live Training (Online)
In Person

Types of Training

Training Docs
Webinars
Live Training (Online)
In Person

Vendor Details

Company Name

NIST

Founded

1901

Country

United States

Website

pages.nist.gov/fds-smv/

Vendor Details

Company Name

ITASCA Consulting

Founded

1981

Country

United States

Website

www.itascacg.com/software/pfc

Product Features

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