PLAXIS 3D
PLAXIS 3D includes the most essential functionality to perform everyday deformation and safety analysis for soil and rock. This comprehensive software for the design and analysis of soils, rocks, and associated structures makes it easy to model in full 3D. Easily generate and scale construction sequences for excavations. Facilitate steady-state groundwater flow calculations, including flow-related material parameters, boundary conditions, drains, and wells. Use interfaces and embedded pile elements to model movement between soil and foundation, such as slipping and gapping. Get trustworthy results with realistic soil models and a complete portfolio of visualization abilities. To meet the unique geotechnical challenges of soil structure interactions, PLAXIS 3D offers different calculation types, such as plastic, consolidation, and safety analysis.
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PLAXIS 2D
Every project is challenging, but the geotechnical analysis doesn’t have to be. PLAXIS 2D provides the power of fast computations. Perform advanced finite element or limit equilibrium analysis of soil and rock deformation and stability, as well as soil structure interaction, groundwater, and heat flow. PLAXIS 2D is a powerful and user-friendly finite-element (FE) software for 2D analysis of deformation and stability in geotechnical engineering and rock mechanics. PLAXIS is used worldwide by top engineering companies and institutions in the civil and geotechnical engineering industry. PLAXIS 2D is ideal for a range of applications from excavations, embankments, and foundations to tunneling, mining, oil and gas, and reservoir geomechanics. PLAXIS 2D includes all the essentials to perform deformation and safety analysis for soil and rock that do not require the consideration of creep, steady state groundwater or thermal flow, consolidation analysis, or any time-dependent effects.
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RSData
Fully understand your rock and soil material properties by analyzing their strength characteristics and constitutive behavior to determine strength envelopes and other material parameters. Utilize constitutive models like NorSand and Modified Cam Clay to get an in-depth look into the stress-strain relationship of your soil materials. A bonus of RSData is the addition of RocProp, a database of intact rock properties which runs as a standalone application. Check out the full list of technical features in RSData. Calibrate your rock’s strength criteria and observed stress-strain behaviors using field and lab test data and compare them against numerical simulations of the same tests. Laboratory tests and stress-strain paths of soils can be imported into RSData for visualization. Compare & calibrate material parameters by plotting predicted constitutive behavior on top of experimental data. Different constitutive models in prediction of typical laboratory tests.
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DeepFND
DeepFND is a powerful, user-friendly software tool for deep foundation pile design that brings together geotechnical and structural calculations in one integrated environment. It allows engineers to compute axial geotechnical pile capacity (skin friction, end bearing) and estimate settlement response from SPT or CPT inputs, perform full lateral pile analysis (displacement, shear, moment) via defined head-loads or pushover routines, and design single piles, pile groups, and pile rafts, including custom pile-cap geometries. It supports nearly all pile types, drilled, driven, CFA, caissons, drilled-in-displacement, micropiles, and helical piles, and models soil-structure interaction either via soil springs or a full 3D finite-element engine. It enables structural checks under service and factored load conditions using international design codes (ACI, AISC, Eurocodes, AS/NZS, Chinese Standards, AASHTO LRFD).
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