Earthwork Balancing

Earthwork Balancing MCP Connector for Claude

A+

Optimize cut and fill volumes using mass haul analysis.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides advanced earthwork optimization tools. It allows AI agents to calculate material surpluses and deficits, analyze mass haul profiles, and minimize transport costs. Use calculate_volume_balance to determine total borrow or waste, analyze_mass_haul for station-by-station profiles, optimize_haulage to find the most efficient movement plan, and locate_borrow_pit to identify the best external source location.

earthworkmass-haulcivil-engineeringcut-and-filllogistics

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

analyze_mass_haul

Provides a detailed breakdown of the earthwork profile to identify specific areas of surplus and deficit

calculate_volume_balance

Determines the fundamental surplus or deficit of material across the entire project

locate_borrow_pit

Finds the ideal external source location to minimize the cost of bringing in required material

optimize_haulage

Identifies the most cost-effective movement of material to minimize total transport work

See how to talk to your AI agent using Earthwork Balancing.

Calculate the total borrow and waste for a project with cut volumes [100, 200, 50] and fill volumes [150, 100, 50] with a 0.1 shrinkage factor.

The project requires a borrow volume of 35 m³ and has a waste volume of 0 m³.

Where should I place a borrow pit for these volumes: cut [50, 50], fill [100, 100], shrinkage 0.1, at coordinates [0, 100]?

The optimal borrow pit location is at coordinate 50.0 m, with an estimated import cost of 11000.0 m³·m.

Show me the mass haul profile for cut [200, 0] and fill [0, 150] with 0.1 shrinkage.

The station profiles show a surplus of 200 m³ at station 0 and a deficit of 165 m³ at station 1.

The shrinkage factor accounts for the volume reduction that occurs when soil is compacted in a fill area. The tool adjusts fill requirements upward to ensure the final compacted volume meets design specifications.

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