Pump Sizing Calculator

Pump Sizing Calculator MCP Connector for Claude

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Professional engineering tool for pump sizing, power calculation, and cavitation safety analysis.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides essential engineering tools for fluid transport system design. It allows AI agents to calculate the exact operating point where a pump meets system resistance using pump_calculate_operating_point. Engineers can determine electrical and mechanical requirements via pump_calculate_power_requirements, evaluate safety against cavitation using pump_check_cavitation_risk, and predict performance changes under different hardware configurations with pump_apply_affinity_laws.

pumpsfluid-transportmechanical-engineeringnpshaffinity-laws

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

pump_calculate_operating_point

Determine the specific operating conditions where the pump performance meets the system resistance

pump_apply_affinity_laws

Predict how changing the pump hardware (impeller size) or speed will impact performance

pump_calculate_power_requirements

Determine the electrical and mechanical power needed to drive the pump at a specific operating point

pump_check_cavitation_risk

Evaluate if the current system configuration will cause cavitation damage

See how to talk to your AI agent using Pump Sizing Calculator.

Calculate the power required for a pump with 50 m3/h flow, 30m head, fluid density of 1000 kg/m3, and 75% efficiency.

The required power is 4.31 kW (5.78 HP) with a shaft torque of 145.2 Nm.

Is it safe to run a pump with 5m NPSH available and 4.5m NPSH required, assuming a 0.5m safety margin?

No, the system is not safe. The available margin is 0.5m, which does not exceed the required safety margin.

If I increase the impeller diameter by 10%, what happens to the flow and head?

With a diameter ratio of 1.1, the predicted flow increases by 10% and the head increases by 21%.

You can use the `pump_calculate_operating_point` tool by providing the target flow rate and the JSON-formatted system and pump curves.

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