Best Mining Software - Page 6

How Many Mining Software Products Does G2 Track?

Total Products under this Category: 86

Category Stats (Sep 2026)

  • Average Rating: 4.44/5 (↑0.03 vs Aug 2026) The average rating of products in this category, based on all submitted ratings

Last updated: September 20, 2026

How Does G2 Rank Mining Software Products?

Why You Can Trust G2's Software Rankings:

  • 30 Analysts and Data Experts
  • 300+ Authentic Reviews
  • 86+ Products
  • Unbiased Rankings

G2's software rankings are built on verified user reviews, rigorous moderation, and a consistent research methodology maintained by a team of analysts and data experts. Each product is measured using the same transparent criteria, with no paid placement or vendor influence. While reviews reflect real user experiences, which can be subjective, they offer valuable insight into how software performs in the hands of professionals. Together, these inputs power the G2 Score, a standardized way to compare tools within every category.

G2 Grid® for Mining Software

G2 Grid® for Mining Software plotting products by satisfaction and market presence

Highlighted products: Leapfrog Geo, GEOVIA Surpac, Surfer, Dips, and XLMiner.

Underlying data: [Grid® JSON](https://www.g2.com/categories/mining/grids.json?focus%5B%5D=leapfrog-geo&focus%5B%5D=geovia-surpac&focus%5B%5D=surfer&focus%5B%5D=dips&focus%5B%5D=xlminer)

RaptorTech

Get the best GNSS receiver & machine control solutions for the construction and mining sector. Improve efficiency & accuracy with RaptorTech.

Who Is the Company Behind RaptorTech?

RocTopple

RocTopple is an interactive software tool for performing toppling analysis and support design of rock slopes. The analysis is based on the popular block toppling method of Goodman and Bray first published in a paper, Toppling of Rock Slopes, in 1976. Input the slope parameters, discontinuity spacing, dip angle and strength, and RocTopple automatically generates the toppling blocks. RocTopple makes it easy to visualize the slope failure in 2D and interactive 3D and displays the potential failure mode of individual blocks (toppling, sliding, stable) as well as the overall safety factor. In addition to deterministic analysis, RocTopple features probabilistic and sensitivity analysis options. Probabilistic analysis allows you to define statistical distributions for any combination of input variables. A probability of failure is calculated, and results can be plotted as histograms, scatter plots, and cumulative plots. Sensitivity analysis allows you to determine the effect of individual variables on the results. RocTopple implements Eurocode 7 design standards, which allows you to define partial safety factors for different components of the analysis. RocTopple rounds out our suite of rock slope stability software, which also includes SWedge, RocPlane, and Dips.

Who Is the Company Behind RocTopple?

  • Seller: Rocscience
  • Year Founded: 1996
  • HQ Location: Toronto, ON
  • Twitter: @Rocscience
    2,344 Twitter followers
  • LinkedIn® Page: www.linkedin.com
    140 employees on LinkedIn®

RPM MinePlanner

Who Is the Company Behind RPM MinePlanner?

  • Seller: RPMGlobal
  • HQ Location: Brisbane, AU
  • Twitter: @rpmmining
    1,144 Twitter followers
  • LinkedIn® Page: www.linkedin.com
    380 employees on LinkedIn®
  • Ownership: ASX: RUL.AX

Slide2

Slide2 (formerly “Slide”) is a 2D slope stability program for evaluating the safety factor or probability of failure, of circular and non-circular failure surfaces in soil or rock slopes. Slide2 is simple to use, and yet complex models can be created and analyzed quickly and easily. External loading, groundwater and support can all be modeled in a variety of ways. Slide2 analyzes the stability of slip surfaces using vertical slice or non-vertical slice limit equilibrium methods like Bishop, Janbu, Spencer, and Sarma, among others. Individual slip surfaces can be analyzed, or search methods can be applied to locate the critical slip surface for a given slope. Users can also carry out deterministic (safety factor) or probabilistic (probability of failure) analyses. Groundwater Analysis with Slide2 Finite element groundwater (seepage) analysis, for steady state or transient conditions, is built right into Slide2. Probabilistic Slope Stability with Slide2 Slide2 also has extensive probabilistic modeling and analysis features. Nearly all model input parameters can be defined as random variables, so that a probability of failure or reliability index may be calculated. Sensitivity Analysis can also be carried out. See the Probabilistic Analysis Overview topic for more information.

Who Is the Company Behind Slide2?

  • Seller: Rocscience
  • Year Founded: 1996
  • HQ Location: Toronto, ON
  • Twitter: @Rocscience
    2,344 Twitter followers
  • LinkedIn® Page: www.linkedin.com
    140 employees on LinkedIn®

TerraEye

Terraeye: AI-Powered Satellite Intelligence for Global Exploration Terraeye is an advanced Earth Observation (EO) and AI-enabled analytics platform designed to transform how mining, energy, and environmental teams interact with geospatial data. By fusing multi-source satellite imagery with proprietary machine learning, Terraeye provides "point-and-shoot" mineral mapping and environmental monitoring that delivers results in minutes—not months. +1 Core Focus: Seamless Data Integration Terraeye acts as a centralized Digital Twin for your assets. Our "Fusion Lab" unifies disparate data streams into a single, intuitive interface, including: Satellite Constellations: High-resolution optical (multispectral and hyperspectral), Synthetic Aperture Radar (SAR), and thermal data. In-Situ & Third-Party Data: Integration of UAV (drone) imagery, ground sensors, and existing company geological records. API & GIS Compatibility: Seamlessly export results to existing GIS tools or integrate with enterprise workflows via our open API. Intelligent AI Support & Predictive Analytics Terraeye removes the need for in-house remote sensing experts. Our AI-driven engine automates the heavy lifting: AI Mineral Discovery: Leverage sophisticated algorithms like Spectral Angle Mapper (SAM) and unsupervised clustering to identify mineralization zones and alteration halos invisible to the naked eye. Predictive Environmental Monitoring: Proactively track vegetation stress, land subsidence, and water quality. Our system alerts you when anomalies exceed predicted safety thresholds. AI Chat Assistant: (Preview feature) Use natural language to query your data, generate instant reports, and interpret complex geological patterns without manual data crunching. Why Choose Terraeye? Speed to Insight: Generate initial spectral analysis in as little as 4 minutes. Democratized Expertise: Designed for geologists and managers, not just data scientists. ESG & Compliance: Automate sustainability reporting with objective, historical, and real-time satellite evidence of your environmental footprint.

Who Is the Company Behind TerraEye?

  • Seller: TerraEye
  • Year Founded: 2022
  • HQ Location: Wrocław, PL
  • LinkedIn® Page: www.linkedin.com
    24 employees on LinkedIn®

UnWedge

UnWedge is a 3D stability analysis and visualization program for underground excavations in rock containing intersecting structural discontinuities. Safety factors are calculated for potentially unstable wedges and support requirements can be modeled using various types of pattern and spot bolting and shotcrete. Use UnWedge to quickly create a model, perform a safety factor analysis, place reinforcement and interpret the results. The graphical data interpreter provides a rich set of tools, including 3D animation, for the convenient display of wedges surrounding the excavation. In addition to allowing for simple point and click geometry input/editing, UnWedge provides enhanced support models for bolts, shotcrete and support pressures, the ability to optimize tunnel orientation and an option to look at different combinations of three joint sets based on a list of more than three joint sets. UnWedge uses a new analysis engine based on Goodman and Shi's block theory, which includes the ability to incorporate induced stress around the excavation and the effect on stability, new strength models such as Barton-Bandis and Power Curve, and the ability to improve the scaling and sizing of wedges.

Who Is the Company Behind UnWedge?

  • Seller: Rocscience
  • Year Founded: 1996
  • HQ Location: Toronto, ON
  • Twitter: @Rocscience
    2,344 Twitter followers
  • LinkedIn® Page: www.linkedin.com
    140 employees on LinkedIn®

WinLoG Boring and Well Logging Software

WinLoG Boring and Well Logging Software is a boring and well logging software that provides data that can be displayed in the field then transferred to your desktop for a professional full colored log or your report.

Who Is the Company Behind WinLoG Boring and Well Logging Software?

XECUTE

Mine Planning & Scheduling

Who Is the Company Behind XECUTE?

  • Seller: RPMGlobal
  • HQ Location: Brisbane, AU
  • Twitter: @rpmmining
    1,144 Twitter followers
  • LinkedIn® Page: www.linkedin.com
    380 employees on LinkedIn®
  • Ownership: ASX: RUL.AX

Xeras

Xeras is a financial modeling system that gives you financial visibility across your mine planning process by allowing you to see how your costs are tracking, comparing inputs and outputs across sites to enable timely intervention and action.

Who Is the Company Behind Xeras?

  • Seller: RPMGlobal
  • HQ Location: Brisbane, AU
  • Twitter: @rpmmining
    1,144 Twitter followers
  • LinkedIn® Page: www.linkedin.com
    380 employees on LinkedIn®
  • Ownership: ASX: RUL.AX

XPAC Solutions

XPAC Solutions is a mine planning software.

Who Is the Company Behind XPAC Solutions?

  • Seller: RPMGlobal
  • HQ Location: Brisbane, AU
  • Twitter: @rpmmining
    1,144 Twitter followers
  • LinkedIn® Page: www.linkedin.com
    380 employees on LinkedIn®
  • Ownership: ASX: RUL.AX

XSite

XSite is a powerful three-dimensional hydraulic fracturing numerical simulation program based on the Synthetic Rock Mass (SRM) and Lattice methods. XSite is capable of modeling multiple wellbores with multiple stages and clusters, including open-hole completions and perforation tunnels. XSite resolves general hydraulic fracture interaction, including propagation in naturally fractured reservoirs with deterministically or stochastically generated discrete fracture networks (DFNs). The models conduct fully coupled hydro-mechanical simulations. Fluid flow is simulated as fracture flow within the joint networks and as matrix flow within the intact rock.

Who Is the Company Behind XSite?

Neya Kumaresan
NK
Researched and written by Neya Kumaresan
Updated October 3, 2024