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.

***3D analysis allows analysis of a broader range of applications:

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*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.

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***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

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*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.

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