SoilVision Systems Ltd.

- Advanced Modeling Software

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SoilVision Systems is proud to introduce SVOffice 2009, our most advanced modeling software to date. Take the step into 3D with advanced visualization and model analysis packages.

SVOffice 2009 also introduces SVSlope, our new comprehensive slope stability package! SVSlope raises the bar on slope stability analysis software.

1. Advanced Slope Stability Analysis

With the new SVSlope slope stability analysis package your company will have access to the most comprehensive array of deterministic and probabilistic methods of limit equilibrium analysis methods.

2. Advanced Model Coupling

  • Coupling of the air/water/thermal phases allows more comprehensive analysis of i) cover designs and, ii) waste rock flow, and iii) various other applications.
  • Coupled density-dependant flow allows handling of salt-water/ fresh water potash mine tailings scenarios and tidal inflow scenarios.
  • Coupled seepage and stress analysis allows saturated consolidation analysis to be performed ... COMING SOON!.

3. 3D Modeling Solutions

Modeling of systems which are not adequately represented by a simplified 2D cross section may be accomplished.

4. Large-Strain Moving Mesh

Implementation of a pure lagrangian large-strain stress analysis allows analysis of models with large deformations greater than 10% ... COMING SOON

5. Automatic Mesh Refinement

Automatic mesh refinement greatly enhances model stability, accuracy, and convergence.

6. Spatially Varying Material Properties

Material properties may now be set to vary spatially in any particular region of the model domain. This is available in our SVSlope and SVFlux packages

7. Product Integration

Products support highly integrated and coupled solutions. i.e. Rainfall on an unsaturated slope potentially causing instability.

8. Comprehensive Probabilistic Analysis

Monte Carlo, APEM, Latin Hypercube and other types of probabilistic analysis may be carried out in our SVSlope package. Monte Carlo analysis for steady state models can be carried out in our SVFlux package.

9. Customized Solutions

Our mathematical scripting language can be used to build your own customized finite element solutions!

10. Extensive Soil Database

Database of unsaturated hydraulic properties laboratory data on over 6500 soils and 24 theoretical methods of estimating unsaturated hydraulic properties.

  • Tutorial sidebar provides quick reference to basic model steps right in the CAD view
  • Well / Tunnel head boundary conditions available for SVHeat, SVAirflow, and Chemflux
  • Spatially varying soil properties aids in improving the calculation of factors of safety
  • Planar Geometry
  • Climatic analysis in the unsaturated / vadose zone is available by coupling ChemFlux with SVFlux, SVHeat with SVFlux, SVSlope with SVFlux, or by importing pore-water pressures from SVFlux
  • Rapid drawdown of reservoir levels by the effective stress method is available by coupling SVSlope with SVFlux
  • Rapid drawdown (RDD) analysis with the Duncan (1990) three-stage total stress method is also available

  • 3D analysis allows analysis of a broader range of applications:
    • Seepage / Groundwater Modeling - Heap Leach Modeling, Tailings Pond Modeling, Dam Design and Analysis, Soil Cover Modeling.
    • Stress and Deformation Modeling - Foundation Design, Tunnel Design, Anchor Design, Slab on Ground Modeling.
      Freeze and Thaw Modeling - Pipe Design, Roadways, Mining.
    • Air Flow Modeling - Foundation Vapor Intrusion, Soil Air Phase Modeling.
    • Contaminant Transport Modeling - Contaminant Migration, Waste Containment Modeling.
  • Comprehensive statistical analysis allows the modeling solution to be presented in a comprehensive way
  • Handling of conductive and convective heat fluxes
  • Climatic boundary conditions
  • Material properties may be set to vary spatially in any particular region of the model domain in SVFlux and SVSlope
  • Coupled saturated/unsaturated slope stability analysis can be performed using SVFlux and SVSlope
  • Comprehensive probabilistic analysis can be performed with SVSlope
  • Slope stability analysis can be performed using both classic method of slices methods and newer stress-based methods allowing greater confidence in the results
  • Advanced model coupling: Multiple processes may now be fully coupled between the numerical packages
    • Coupling of water/thermal phases allows more comprehensive analysis of i) cover designs and, ii) waste rock flow, and iii) various other applications.
    • Coupled density-dependant flow allows handling of salt-water/ fresh water potash mine tailings scenarios and tidal inflow scenarios.
    • Coupled seepage and stress analysis allows saturated consolidation analysis to be performed.
  • Advanced elasto-plastic soil models such as Von Mises, Druker-Praeger allow analysis of plastic materials
  • Large strain moving mesh: Implementation of a pure lagrangian large-strain stress analysis allows analysis of models with large deformations.
  • Training time is minimized through an extensive integrated help system and easy-to-use graphical user interface
  • Large library of example models
  • Documentation of example models in our Example Manuals
  • Time savings through the following features:
  • Automatic Mesh Generation - Don't worry about creating the problem mesh, this is automatic.
    • Automatic Mesh Refinement - Don't worry about adding mesh density to sensitive zones, this is automatic.
    • Geometry Imports - 2D and 3D problems can be defined quickly.
    • Right-click menus for access to context-sensitive commands
    • Online Manuals - All of our manuals are available online with context-sensitive help. Just hit F1 when a dialog box is open to read its help contents.

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