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CivilFEM Geotécnica, túnel e mineração

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O CivilFEM é um software poderoso para lidar com toda a gama de aplicações de projeto geotécnico, incluindo fundações profundas, escavações, sistemas complexos de túneis, análise de infiltração, análise de consolidação, projeto de aterro, análise dinâmica e de estabilidade de taludes. O CivilFEM também possui uma plataforma de modelagem avançada e amigável.

Para maiores informações:
www.natecnologia.com.br

Para maiores informações:
www.natecnologia.com.br

Publicada em: Engenharia
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CivilFEM Geotécnica, túnel e mineração

  1. 1. -CivilFEM makes the difference- Multidisciplinary Advanced Non-linear FEM Analysis Software Geotechnics, Tunnels and Mining “CivilFEM® works in the same way as you build” Analyze the entire construction process in a single model: CivilFEM facilitates the virtual simulation of all the non-linear construction processes in a straightforward sequential way by means of its tools, time-dependent properties and activation and deactivation of materials. CivilFEM® powered by Marc® is a very powerful and versatile program suitable for all the types of advanced analyses performed in all construction sectors, providing a rich set of tools that streamline the creation of analysis models for Construction, Dams, Civil Engineering, Tunnels, Geotechnics, Mining, Energy, Oil & Gas, Precast, etc. With its intuitive user friendly interface and pre/post features, it is very easy to learn. CivilFEM incorporates the powerful Marc® from MSC® Software non-linear solver and aids to solve the most demanding and complex advanced analyses. ®Trademark property of their respective owners www.civilfem.com info@civilfem.com Geotechnical Capabilities Highlights:  Nonlinear material behavior laws: 2D and 3D Mohr-Coulomb with variable “c” and “ϕ”, Cam- Clay (initial tensile stress), Drucker-Prager, Hyperbolic…  Transient and nonlinear evolutive construction process (analysis of construction staging in tunnels)  Seepage (steady and transient analysis)  Seepage-structural coupled analysis  Time dependent material properties  Soil-structure interaction analysis  Initial stresses state of the terrain (water table, total and effective stresses)  Multibody advanced contacts (cohesion, static and sliding friction coefficients…)  Slope stability (SRF…)  Prestressed reinforced concrete  Creep and shrinkage, cracking (concrete, timber…)  Non-linear springs and dampers  Thermo-structural analysis

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