Sucker Rod Pump Design Engine

Sucker Rod Pump Design Engine MCP Connector for Claude

A+

Technical design engine for API 11L compliant sucker rod pump configurations.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides a complete technical suite for designing sucker rod pumping (SRP) systems according to API 11L standards. It allows AI agents to calculate optimal pump dimensions, validate rod string integrity, select appropriate surface units, and determine prime mover requirements. Use get_pump_configuration to establish initial parameters, validate_rod_string to ensure mechanical safety, select_surface_unit to match equipment to loads, and calculate_prime_mover to size the motor horsepower.

api-11lsucker-rod-pumpwell-designpetroleum-engineeringmechanical-load

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

calculate_prime_mover

Calculates the required motor horsepower to drive the surface unit

get_pump_configuration

Determines the necessary pump dimensions and operating parameters to meet a specific production target

select_surface_unit

Identifies the appropriate surface pumping unit based on the calculated mechanical requirements

validate_rod_string

Checks if a specific rod string configuration can safely support the loads generated by the pump design

See how to talk to your AI agent using Sucker Rod Pump Design Engine.

Calculate a pump configuration for a well with 5000ft depth, PI of 0.5, target rate of 200 bpd, and fluid density of 8.6 ppg.

The recommended configuration includes a plunger diameter of 1.75 inches, a stroke length of 86 inches, and a pumping speed of 6.5 SPM to achieve the 200 bpd target.

Is a rod string with 12 ppg fluid density, 5000ft depth, and 2.0 inch plunger safe if the rod weight is 2.5 lb/ft and strength is 100,000 psi?

Yes, the rod string configuration is safe with a calculated safety factor of 2.1.

What motor horsepower is needed for a unit with a 25,000 lb peak load, 100 inch stroke, 7 SPM, and 85% efficiency?

The required motor power is 28.5 HP, and a 30 HP motor is recommended.

The design calculations and component sizing follow the industry-standard API 11L methodology.

Related Connectors