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Fast and efficient finite element model creation The user-friendly interface guides the user to efficiently create models with a logical geotechnical workflow. Via Boreholes users can define complex soil profiles or geological cross-sections. In the Structures mode, structural elements, like piles, anchors, geotextiles, and prescribed loads and displacements can be defined. Geometry can also be imported from CAD-files.

The automatic meshing procedure creates a finite element mesh almost immediately. Realistic assessment of stresses and displacements With Staged Construction users can accurately model the construction process, by activating and deactivating soil clusters and structural elements in each calculation phase. With plastic, consolidation and safety analysis calculation type, a broad range of geotechnical problems can be analyzed. Constitutive models range from simple linear to advanced highly non-linear models through which soil and rock behaviour can be simulated. Well proven and robust calculation procedures ensure converging calculations and accurate results.

With multi-core calculations and 64-bit architecture PLAXIS can deal with the largest and most complex models. Calculations • Field stress initial calculation type (VIP) • Well-proven and robust calculation procedures • Multicore computing (VIP) • Include or exclude soil clusters and/or structural elements in safety analysis • Facilities for steady-state groundwater flow calculations, including flow-related material parameters, boundary conditions, drains and wells. • Distinguish between a Plastic calculation, consolidation-, and safety analysis • Automatic regeneration of construction stages • 64-bit Calculation Kernel. Keygen

Plaxis

+ PLAXIS 2D program including the 2D Dynamics and 2D PlaxFlow modules make up a finite element package intended for the two dimensional analysis of deformation and stability in geotechnical engineering. It is a robust and user-friendly finite element package, developed for Geotechnical Engineering. It offers the tools professionals need in today’s and tomorrow’s world of high-tech building to analyse complex projects. Geotechnical applications require advanced constitutive models for the simulation of the non linear, time dependent and anisotropic behavior of soils and/or rock.

In addition, since soil is a multi phase material, special procedures are required to deal with hydrostatic and non hydrostatic pore pressures in the soil. Although the modelling of the soil itself is an important issue, many projects involve the modelling of structures and the interaction between the structures and the soil. PLAXIS 3D is a finite element package intended for three-dimensional analysis of deformation and stability in geotechnical engineering. It is equipped with features to deal with various aspects of complex geotechnical structures and construction processes using robust and theoretically sound computational procedures. With PLAXIS 3D, complex geometry of soil and structures can be defined in two different modes.