Foil Pump Efficiency Engine

Foil Pump Efficiency Engine MCP Connector for Claude

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Calculate hydrofoil pumping energy, speed gain, and efficiency.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized calculation tools for hydrofoil riders to analyze their pumping performance. Use get_pump_energy to determine the work performed per stroke, calculate_speed_gain to estimate velocity increases, and evaluate_pumping_efficiency to assess overall energy conversion. For a complete data snapshot, use get_performance_summary to retrieve energy, speed, and efficiency metrics in one call.

hydrofoilpumpingefficiencyenergyperformance

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

evaluate_pumping_efficiency

Calculates the overall efficiency percentage of the pumping session

get_performance_summary

Provides a comprehensive overview of the pumping profile

get_pump_energy

Calculates the work performed during a single pumping stroke

calculate_speed_gain

Determines the theoretical increase in forward velocity resulting from one pump cycle

See how to talk to your AI agent using Foil Pump Efficiency Engine.

How much energy is generated per pump for a 75kg rider with a 90cm mast?

The energy generated per pump is 735.75 Joules.

What is the speed gain for a wing with 1200cm² area, 80cm mast, and 5 aspect ratio?

The theoretical speed gain per pump is 0.45 m/s.

Calculate the efficiency for a 70kg rider, 1100cm² wing, 0.6 aspect ratio, 40 pumps per minute, and 0.8 technique.

The overall pumping efficiency is 62.5%.

You can use the `get_pump_energy` tool by providing the rider's weight in kilograms and the mast length in centimeters.

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