GeostudioGeo-environmental Engineering Software

Enhancing Geotechnical Subsurface Analysis

Geostudio simulate surface and subsurface conditions through 2D or 3D numerical analysis tools that includes  groundwater flow, contaminant transfer, energy movement, and pore air flow through the subsurface.

Geostudio consists of three different types of soutions. Geostudio 2D, Geostudio 3D, Geostudio Flow. Each different types give different types of capabilities and functions that fits to the requirements of the project.

Geostudio 3D

GeoStudio 3D offers a range of numerical analysis tools for simulating conditions above and below the ground surface. GeoStudio 3D can be used for a range of applications including natural soil and rock slopes, regional groundwater systems, excavations and open pit mines, dewatering systems, earthen dams and levees, reinforced earth structures, and tailings storage facilities.

ANALYSIS TYPE:
  • Limit equilibrium slope stability
  • Limit equilibrium slope stability with finite element pore waters
  • Steady-state and transient saturated/unsaturated groundwater seepage

Foundational Capability

GeoStudio 3D (SLOPE3D) offers the foundational capability to perform Limit Equilibrium slope stability analysis for soil and rock. GeoStudio 3D offers a comprehensive list of features including:

  • Rigorous limit equilibrium formulation
  • Multiple analysis methods, including Morgenstern-Price and Spencer
  • Slip surface search methods including Entry-Exit and Cuckoo
  • Efficient root-finding algorithm for computing the factor of safety
  • Pore water pressure definition using piezometric lines| Ru| and B-bar
  • Partial factor formulation and limit state design support for Eurocode or Load Resistance Factor Design
  • Comprehensive material model library for soil and rock
  • Pseudo-static approach for seismic analysis

GeoStudio 3D Advanced

GeoStudio 3D Advanced (SLOPE3D + SEEP3D) includes all the core features of the GeoStudio 3D tier while adding the capability to simulate steady-state and transient groundwater flow in both saturated and unsaturated soil and rock. The enhanced features available in GeoStudio 3D Advanced include:

  • Comprehensive saturated-unsaturated formulation for steady-state or transient groundwater flow
  • Seamless integration of finite element pore-water pressure with slope stability analysis for both steady-state and transient problems
  • Rigorous under-relaxation and convergence strategies
  • Option to include isothermal vapor transfer
  • Estimation routines for hydraulic functions
  • Convenient initial pore water pressure condition definition
  • Complete range of hydraulic boundary conditions
  • Powerful results graphing and visualization options| including isosurfaces and contouring
  • Ability to assess stability given complex pore water pressure conditions

SYSTEM REQUIREMENTS

Operating System: Microsoft® Windows® 11, Windows® 10. Installers require the latest Visual C++ Redistributable runtime libraries installed.

Processor: Intel® Pentium® 4 or better| or AMD Opteron™ or Athlon™ 64 or better (GeoStudio is optimized for multi-core Intel processors.). Recommended using Intel® i5| i7| i9| AMD Ryzen.

System Memory: 8 GB Ram Minimum – 16 GB Ram Recommended.

Storage: 64GB Minimum – 500GB Recommended.

Display: Full HD at minimum – Full HD or higher Recommended.

Graphic Requirements:
2GB VRAM / DirectX 10+ support| e.g. NVIDIA GeForce| AMD Radeon minimum; For 3D features| your graphics card must support Direct3D¬Æ Feature Level 10_1 or greater.  NVIDIA GTX 16 series| NVIDIA RTX 20 series with 4GB memory or better recommended.

GEOSTUDIO 2D

Simulate surface and subsurface conditions with GeoStudio 2D numerical analysis tools. GeoStudio 2D can be used for a range of applications including natural soil and rock slopes, regional groundwater systems, excavations and open pit mines, dewatering systems, earthen dams and levees, reinforced earth structures, and tailings storage facilities.

Analysis Type:

  • Limit equilibrium slope stability
  • Limit equilibrium slope stability with finite element pore waters
  • Steady-state saturated/unsaturated groundwater seepage
  • Transient saturated/unsaturated groundwater seepage
  • Finite element stress-based stability
  • Strength reduction stability
  • Newmark deformation stability analysis

Geostudio 2D Technical Capabilities

GeoStudio 2D (SLOPE/W) offers the foundational capability to perform Limit Equilibrium slope stability analysis for soil and rock. GeoStudio 2D offers a comprehensive list of features, including:

  • Rigorous formulation of limit equilibria.
  • 13 analysis methods, including Morgenstern-Price and Spencer.
  • Various slip surface search techniques including Entry-Exit, Grid and Radius, and Cuckoo.
  • Rigorous algorithm for solving nonlinear equations to calculate the safety coefficient.
  • Definition of pore water pressure with piezometric lines, spatial functions, Ru and B-bar.
  • Probabilistic and sensitivity analysis capabilities.
  • Partial factor, staged pseudostatic, and staged rapid decay formulations.
  • Complete library of material models for soil and rock.
  • Functions of reinforcement, overload and earthquake loads.
  • Supplier reinforcements library with products from Huesker, Maccaferri, TenCate and Tensar.
  • Limit state design support according to the Eurocode or for design by load resistance coefficients.

Geostudio 2D Advanced Technical Capabilities

GeoStudio 2D Advanced (SLOPE/W + SEEP/W) offers all the essential capabilities of the GeoStudio 2D tier, while introducing the ability to simulate steady-state and transient groundwater flow in both saturated and unsaturated soil and rock. The additional features offered in GeoStudio 2D Advanced include:

  • Complete formulation for saturated-unsaturated terrains of stationary or transient groundwater flows.
  • Fluid integration of pore water pressure by finite elements with slope stability analysis for stationary or transient problems.
  • Geometry options include 2D cross sections, 2D axisymmetry, and 1D geometries.
  • Rigorous low relaxation and convergence strategies.
  • Option to include isothermal vapor transfer.
  • Estimation routines for hydraulic functions.
  • Convenient definition of the initial conditions of pore water pressure.
  • Complete range of hydraulic boundary conditions, including specialized boundary conditions for soil-atmosphere coupling.
  • Powerful plotting and results visualization options, including isosurfaces and contouring.
  • Ability to evaluate stability with complex pore water pressure conditions.

GeoStudio 2D Ultimate

Expands the capability of the GeoStudio 2D Advanced tier with functionality to deal with the most challenging geotechnical projects. It includes features to analyse static and dynamic stress and deformation within soil or rock, coupled consolidation, and finite element stability methods.

SYSTEM REQUIREMENTS

Operating System: Microsoft¬Æ Windows¬Æ 11| Windows¬Æ 10. Installers require the latest Visual C++ Redistributable runtime libraries installed. Recommended using Windows¬Æ 10 x64 .

Processor: Intel® Pentium® 4 or better| or AMD Opteron™ or Athlon™ 64 or better (GeoStudio is optimized for multi-core Intel processors.). Recommended using Intel® i5| i7| i9| AMD Ryzen.

System Memory: 4 GB Ram Minimum — 16 GB Ram Recommended.

Storage: 64GB Minimum — 500GB Recommended.

Display: 1024×768 — Full HD  Recommended.

Graphic Requirements:
NVIDIA® GT 300, ATI® Radeon® HD 4000 Series, Intel® HD Graphics 3000/2000. — 2GB VRAM / DirectX 10+ support, e.g.  NVIDIA GeForce, AMD Radeon recommended.

Geostudio Flow

GeoStudio Flow offers a range of numerical analysis tools for simulating geo-environmental conditions above and below the ground surface. GeoStudio Flow can be used for a range of applications including excavations and open pit mines, dewatering systems, earthen dams and levees, tailings storage facilities, and waste cover systems.

  • Single user-interface for conducting numerical analysis on groundwater flow, contaminant transfer, energy movement, and pore air flow through the subsurface
  • Seamless interoperability with Leapfrog and other external programs for quick geometry definition
  • Multi-physics support for analyzing coupled physical processes such free convection of water due to thermal or concentration gradients
  • Includes features for performing sensitivity analyses, investigating various design options, and simulating sequences
  • Verified against analytical and published solutions

SYSTEM REQUIREMENTS

  • SYNCHRO 4D is a real-time cloud solution that is accessed via a standard web browser from any device with internet connectivity and interoperates with all major 3D modeling and scheduling tools.
  • Supported Browsers: Microsoft Windows 7, Microsoft Windows 8/8.1, Microsoft Windows 10, Microsoft Windows Server
  • Processor Requirements: 2.8GHz Dual Core minimum; 3.33GHz Dual Core recommended; 4.0GHZ Quad Core enterprise specification; only 64-bit (x64) processors are supported.

SYNCHRO AT-A-GLANCE

DELIVER PROJECTS ON TIME.

Working with best-in-class cloud technology with partnership with Microsoft. Plan, manage, construct, track, and review construction projects in 4D, providing the entire project team with real-time progress updates.

CUTTING DOWN BUDGET

Anticipate scheduling issues ahead of time, saving both time and money. Securing the data, being up-to-date, and accessible across various devices, with access tailored to roles and permissions.

PRIORITIZE SECURITY

Avoid every risk by understanding the project through sheer analysis and study. Ensure that the entire team is engaged by inviting the
supply chain to participate.

MAXIMIZE QUALITY

Review, communicate, and cooperate in a digital and interactive visual environment to ensure performance at a higher level. Validate and
optimize project plan before starting on a project.

Preconstruction teams, field managers, corporate managers, and the executives who lead them, rely on a clearly defined scope of work, and the ability to define and track quantities accurately. SYNCHRO makes this possible with model-based workflows utilizing a single-source-of-truth for 3D model management. SYNCHRO Construction plays a crucial role in the future of heavy and highway construction by enabling the contractor to define a constructible model.
Andy Kaiyala
Andy KaiyalaVice President of Construction Technology, WSB

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