Multiphase Pump Design Suite

Multiphase Pump Design Suite MCP Connector for Claude

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Engineering tools for designing multiphase pumping systems based on fluid properties.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools to design multiphase pumping systems. It allows users to determine optimal pump types, calculate power requirements, and estimate the number of units needed for specific fluid mixtures. By using get_pump_type_recommendation, engineers can select between twin-screw and helico-axial technologies based on gas volume fraction and viscosity. The suite also includes calculate_power_demand for energy requirements and validate_system_feasibility to ensure the chosen configuration safely handles the fluid properties.

multiphasepumpingfluid-dynamicsoil-gasengineering-tools

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

estimate_unit_count

Determine the number of pump units required to meet total flow demand

get_pump_type_recommendation

Determine the best suited multiphase pump type based on fluid properties

calculate_power_demand

Calculate the total power required to drive the pump

validate_system_feasibility

Check if the proposed pump configuration can safely handle the fluid properties

See how to talk to your AI agent using Multiphase Pump Design Suite.

What pump type is best for a high viscosity fluid with a 0.4 gas volume fraction?

A twin-screw pump is recommended for this high viscosity fluid with a 0.4 gas volume fraction.

How many pump units do I need for a total flow of 500 m3/h if each unit handles 200 m3/h?

You will need 3 pump units to meet the total flow demand.

Is a helico-axial pump feasible for a mixture with 0.8 gas volume fraction and low viscosity?

No, a helico-axial pump is not feasible for a gas volume fraction as high as 0.8; a twin-screw pump is required.

You can use `get_pump_type_recommendation` to choose between twin-screw and helico-axial pumps based on the fluid's gas volume fraction and viscosity.

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