Tailings Storage Facility Design

Tailings Storage Facility Design MCP Connector for Claude

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Design tailings storage facilities (TSFs) using production, topography, and water balance data.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for designing tailings storage facilities (TSFs). It allows users to calculate storage capacity, determine embankment requirements for different construction methods, and simulate water balance. By integrating production rates and site topography, the tool can generate a complete design summary including estimated lifespan and stability status. Use analyze_storage_capacity to find available volume, calculate_embankment_requirements for dam wall specifications, simulate_water_balance for water level fluctuations, and design_tsf_lifecycle for a full design overview.

miningtsfengineeringwater-managementtopography

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

analyze_storage_capacity

Determines the total volume available for tailings and water based on site layout

calculate_embankment_requirements

Determines the necessary height and volume of the dam wall

design_tsf_lifecycle

Generates a comprehensive design summary by integrating production, topography, and water management

simulate_water_balance

Evaluates how water levels will fluctuate within the facility over time

See how to talk to your AI agent using Tailings Storage Facility Design.

Calculate the storage capacity for a site with a total area of 500,000 m2 and an average depth of 20m, with a tailings density of 1.6.

The total storage capacity for the specified site is 10,000,000 m3.

What are the embankment requirements for a downstream construction with a target volume of 5,000,000 m3?

The required embankment height is 45 meters with a wall volume of 2,250,000 m3.

Generate a full TSF design summary for a production rate of 2,000,000 m3/year using centerline construction.

The design summary shows a total capacity of 10,000,000 m3, an embankment height of 40 meters, and an estimated lifespan of 5 years.

The tool supports upstream, downstream, and centerline construction methodologies for embankment design.

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