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ZAMINEX is a comprehensive software suite for geophysical modeling and inversion. It brings together everything a geoscientist needs in a single, cross-platform desktop application.

🔷 Complete Inversion & Forward Modeling Toolkit (PODIUM & MAGNUM)
Multiple solvers under one roof:
    VIDI: Mesh-based inversions
    FOGO: Forward modeling
    DYNO: Surface-based inversions
No more juggling between disconnected tools.
🔷 Powerful Mesh Generation (TETRIUM)
Generate high-quality unstructured tetrahedral and rectilinear meshes with full control over refinement zones, topography, and boundary conditions — all through an intuitive GUI.
🔷 Built-in AI Assistant

An intelligent, documentation-aware chat assistant powered by Google Gemini. Ask questions about parameters, workflows, or even your own project files — and get instant, context-aware answers.
🔷 Local & Cluster Runs
Run simulations on your laptop with Serial, OpenMP, MPI, or Hybrid parallelization. Scale up seamlessly to your university's SLURM cluster via SSH — or submit to cloud HPC — all from the same interface.
🔷 One Suite, Every Platform
Windows · macOS · Linux
Installers for all three. One project file works everywhere.
Whether you're a researcher, student, or consultant — ZAMINEX is designed to streamline your entire geophysical workflow from data to model.

This software requires a valid license issued by Geotexera Inc. to use.​ For licensing information, technical support, or inquiries, please contact Geotexera Inc. at info@geotexera.com.

A brief review of the "inversion" part of the software

Inversion types:

  • Independent

  • Joint (10 methods)

  • Cooperative

  • Constrained (bounds and reference models)

  • Clustering

  • MVI (Cartesian & spherical methods)

  • ... and any combination of them.

Inversion models:

  • Mesh-based

  • Surface Geometry

  • Lithological

Inversion techniques:

  • Various regularization measures:

    • rotated smoothness axes 

    • total variation

    • Lp-norms (such as L1 & L2)

  • Local and global optimizations

Geophysical methods:

  • Magnetic (TMI, amplitude & vector-components)

  • Gravity

  • Gravity Gradiometry

  • Seismic Refraction (first arrival travel-times)

  • Muography

  • IP & DC Resistivity

  • Magnetotelluric (ground & airborne)

  • EM (will be ready next year)

Mesh:​ The unstructured meshes make it easy to work with any type (airborne, ground, borehole) and size of data. 

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