Tailings Deposition Modeling

Tailings Deposition Modeling MCP Connector for Claude

A+

Simulate physical evolution of tailings storage facilities.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides a simulation engine for predicting the physical evolution of tailings storage facilities. It allows AI agents to model how waste material settles based on tailings characteristics, discharge points, and facility geometry. Key capabilities include using calculate_deposition_profile to determine beach shape, estimate_pond_characteristics to predict supernatant pond size, analyze_storage_capacity to evaluate remaining life, and simulate_consolidation_effects to account for particle compaction over time.

tailingsdepositionmining-safetygeotechnicalsimulation-engine

4 tools expose this connector's capabilities to your AI agent.

analyze_storage_capacity

Evaluates how much remaining space is left in the facility

estimate_pond_characteristics

Predicts the size and position of the water body (supernatant pond) resting on the tailings

simulate_consolidation_effects

Adjusts the deposition profile based on the physical settling and compaction of particles over time

calculate_deposition_profile

Determines the spatial distribution of settled material and the resulting beach shape

See how to talk to your AI agent using Tailings Deposition Modeling.

Calculate the deposition profile for a gold ore tailings with specific discharge points.

The calculated beach slope is 2.5% with a total settled volume of 450,000 cubic meters.

What is the current storage utilization of the facility?

The facility is currently at 65% utilization, with 1.2 million cubic meters of remaining volume.

Predict the supernatant pond size given the current deposition profile.

The supernatant pond will occupy a surface area of 12,000 square meters with a volume of 45,000 cubic meters.

The `calculate_deposition_profile` tool accounts for segregation by modeling how different sized particles settle at different rates, influencing the final beach slope.

Related Connectors