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ITASCA V9 Suite | FLAC3D 2D 9.0 | PFC3D 2D 9.0 | MassFlow 9.0 | 3DEC 9.0 |

https://youtu.be/a6actrzFQBY SOLVE YOUR MOST COMPLEX GEOTECHNICAL PROBLEMS FLAC3D is the best solution to solve complex geotechnical pro

ITASCA V7 FLAC3D_2D PFC3D_2D 3DEC UDEC FLAC SLOPE | V7.0.156
ITASCA V9.0.0.165 Suite | Flac3D_2D + PFC3d_2D + 3DEC + Mass flow ETC

SOLVE YOUR MOST COMPLEX GEOTECHNICAL PROBLEMS

FLAC3D is the best solution to solve complex geotechnical problems for three-dimensional analyses of soil, rock, concrete, structural ground support, and groundwater flow. Options can be added to expand analyses (dynamic, creep, thermal, and IMASS) and to create user-defined constitutive models (UDMs). FLAC3D 9 has an improved user interface (UI) and new interactive tools to construct and interpret models easily. FLAC3D provides an incredibly accurate simulation of real-world geotechnical conditions for engineering applications, such as slope stability, underground excavation behavior, and earthquake simulations. Flexible commands and scripting allow for model parameterization, flexibility, customization, and automation.

FLAC3D

With FLAC3D, the only modeling limitation is your imagination.

FLAC2d

FLAC2D is a 2D version of Itasca’s FLAC3D numerical modeling software and replaces our seminal software — FLAC.

With a completely new user interface (UI) and new interactive tools to construct models and interpret result, FLAC2D is our easiest-to-use software. FLAC2D is the best solution to solve complex geotechnical problems for two-dimensional analyses of soil, rock, concrete, structural ground support, and groundwater flow.

Options can be added to expand analyses (dynamic, creep, and thermal) and to create user-defined constitutive models (UDMs). FLAC2D provides an incredibly accurate simulation of real-world geotechnical conditions for engineering applications, such as slope stability, underground excavation behavior, and earthquake simulations. Flexible commands and scripting allow for model parameterization, flexibility, customization, and automation.

With FLAC2D, the only modeling limitation is your imagination.

PFC (Particle Flow Code) is a general purpose, distinct-element modeling (DEM) framework that is available as two- and three-dimensional programs (PFC2D and PFC3D, respectively). PFC Suite includes both PFC2D and PFC3D. PFC2D can also be purchased separately.

PFC3D
PFC2D

PFC models synthetic materials composed of an assembly of variably-sized rigid particles that interact at contacts to represent both granular and solid materials. PFC models simulate the independent movement (translation and rotation) and interaction of many rigid particles that may interact at contacts based on an internal force and moment. Particle shapes can include disks in 2D, or spheres in 3D, rigidly connected “clumps” of disks in 2D, or spheres in 3D, and convex polygons in 2D or polyhedra in 3D. Contact mechanics obey particle-interaction laws that update internal forces and moments. PFC includes sixteen built-in contact models with the facility to add custom C++ User-Defined Contact Models (UDMs).

Perpetual, monthly lease, and annual lease licenses are available, secured with either a local USB key (which is portable), a web license, or a network USB key. Qualified academic institutions qualify for special pricing discounts.

3DEC is a three-dimensional numerical modeling code for advanced geotechnical analysis of soil, rock, ground water, structural support, and masonry. 3DEC simulates the response of discontinuous media (such as jointed rock or masonry bricks) that is subject to either static or dynamic loading. The numerical formulation It is based on the distinct element method (DEM) for discontinuum modeling. 

MassFlow Theory and Background

MassFlow

MassFlow is a gravity flow simulator that can be run on its own or coupled with FLAC3D or 3DEC to account for the influence of stress.

3DEC
Distinct Element Modeling of Jointed and Blocky Material in 3D

FLAC2D
Continuum Modeling for Geomechanics in 2D

FLAC/Slope
Explicit Continuum Factor-of-Safety Analysis of Slope Stability in 2D

FLAC3D
Explicit Continuum Modeling of Nonlinear Material Behavior in 3D

Griddle
Advanced Meshing Tools for Numerical Modeling

KATS
Kinematic Analysis Tool for Slope Probabilistic and Deterministic Slope Analysis

MINEDW
Groundwater Flow Code focusing on Mining Applications in 3D

PFC
General Purpose Distinct Element Modeling Framework

UDEC
Distinct Element Modeling of Jointed and Blocky Material in 3D

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