Mine Site Drainage Design

Mine Site Drainage Design MCP Connector for Claude

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Hydrological engineering tools for designing mine site drainage, sizing infrastructure, and managing sediment risk.

5 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides a suite of hydrological engineering tools to design safe and efficient drainage systems for mining operations. It allows AI agents to calculate peak runoff using calculate_peak_flow, determine ditch dimensions with size_drainage_ditch, and size culverts via size_culvert. Additionally, it includes capabilities to evaluate_sediment_risk and design_diversion_path to protect critical site assets from water ingress and erosion.

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

calculate_peak_flow

Determines the maximum water volume expected during a design storm event

design_diversion_path

Provides the necessary diversion requirements to protect specific site assets

evaluate_sediment_risk

Assesses if the current drainage design provides sufficient sediment mitigation

size_culvert

Determines the appropriate pipe or tunnel diameter for water crossing under infrastructure

size_drainage_ditch

Calculates the required dimensions for open channels to safely contain peak water flow

See how to talk to your AI agent using Mine Site Drainage Design.

Calculate the peak flow for a 50 hectare area with 25 mm/hr rainfall and a 0.4 runoff coefficient.

The peak flow rate for the specified area is 50.0 m³/s.

What are the dimensions for a ditch with a peak flow of 2.5 m³/s, a 2% slope, and 1.5 m/s allowable velocity?

The required ditch dimensions are a width of 3.5 meters and a depth of 1.8 meters.

Assess the sediment risk for a flow of 1.2 m³/s at a velocity of 0.8 m/s with a sediment load of 0.5 kg/m³.

The sediment risk level is Low, with an effectiveness score of 0.85.

You can use the `calculate_peak_flow` tool by providing the rainfall intensity, the total catchment area in hectares, and the runoff coefficient.