Pivot Irrigation Designer

Pivot Irrigation Designer MCP Connector for Claude

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Design optimized center pivot irrigation systems based on field and water constraints.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized tools for designing center pivot irrigation systems. It allows AI agents to calculate system capacity by balancing well flow with soil intake, determine physical pivot dimensions like arm length and span count, and specify hardware requirements through nozzle package selection. Users can also model pressure distribution along the lateral arm to ensure uniform water delivery. Use get_system_capacity to find the system limit, design_pivot_configuration to define the physical structure, calculate_nozzle_package for hardware specs, and analyze_pressure_profile to monitor pressure drops.

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

analyze_pressure_profile

Models the water pressure changes along the length of the pivot arm

calculate_nozzle_package

Specifies the hardware needed to deliver water effectively

design_pivot_configuration

Determines the physical dimensions and hardware requirements of the pivot

get_system_capacity

Calculates the maximum possible irrigation capacity based on water source and soil limits

See how to talk to your AI agent using Pivot Irrigation Designer.

What is the maximum irrigation capacity for a well providing 500 GPM and soil with an intake rate of 450 GPM?

The maximum system capacity is 450 GPM, as the soil intake rate is the limiting factor.

Design a pivot for a field with a 1200 foot radius and a crop demand of 0.5 inches per hour.

The pivot design requires an arm length of 1200 feet with a specific span count and flow rate to meet the 0.5 inches per hour demand.

What will the pressure be at the end of a 1000ft arm if the pivot pressure is 50 PSI and flow is 300 GPM?

The pressure at the end of the arm will be 42 PSI after accounting for friction loss.

You can use the `get_system_capacity` tool to compare your available well capacity against the soil intake rate to find the maximum possible flow.

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