Automated Stochastic Workflows
Recent advancement of GeoMine has led to the introduction of three automated and practical stochastic mine planning workflows.
Every mine plan is built on an estimate, and every estimate is uncertain. A single kriged block model hides that uncertainty; a set of conditionally simulated realizations exposes it. GeoMine’s stochastic workflows take that set of realizations and turn it into something a planner can act on: one consensus design that is robust across the realizations, and an NPV distribution (P10/P50/P90/Mean) that tells you how much confidence to place in it.
The same three-phase pattern is applied to all three mining methods:
Phase 1 – Optimize every realization. The relevant GeoMine optimizer (FlowPit, Stopemizer or Cavemizer) runs once per realization. Votes are accumulated from all realizations.
Phase 2 – Build the consensus design. Votes are used with user-specified threshold to produce a single consensus pit, stoping limit or caving footprint.
Phase 3 – Schedule every realization against the consensus design. The design is held fixed and the scheduler runs once per realization, producing a per-realization NPV and a self-contained HTML risk report.
The result is a design decision made with the whole realization set in view, not just the expected case.
Three Automated Stochastic Workflows
- Stochastic Open-Pit Workflow - Consensus ultimate pit and pushbacks from N realizations with FlowPit, followed by stochastic multi-pit scheduling. Learn more
- Stochastic Stoping (MSO) Workflow - Consensus stoping limit and minable shape design from N realizations with Stopemizer. Learn more
- Stochastic Block Caving Workflow - Consensus cave footprint and undercut elevation from N realizations with Cavemizer, followed by stochastic caving scheduling. Learn more.
Features Common to All Workflows
Uses a list of block models as input
Consumes any number of block model realizations (conditionally simulated, or simply alternative interpretations) loaded into a single GeoMine session.
Votes are accumulated & consensus design computed
Optimizer is run on each realization and votes are accumulated. A user specified threshold is used to create a consensus design.
Optionality to keep per-reealization designs
Optionally keeps the per-realization designs in the scene for comparison against the consensus.
Generates a NPV distribution & reporting
P10 / P50 / P90 / Mean NPV reporting with a self-contained HTML report (Chart.js) and companion CSV of the chart data
Formula reuse
Built on the same GeoMine Formula Editor used throughout the product, so ore, waste, metal, grade and dollar value definitions are shared with your existing FlowPit, Stopemizer and Cavemizer projects.
System Requirements:
CPU: Quad Core
RAM: 16gb
HARD DRIVE: 500gb SSD
VIDEO CARD: 1gb VRAM
CPU: 3rd Gen Ryzen 5/7 or Intel i7
RAM: 32gb
HARD DRIVE: 1tb SSD
VIDEO CARD: 2gb VRAM




