Kite Depower Mechanics

Kite Depower Mechanics MCP Connector for Claude

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Simulate kite depower mechanics including angle of attack, power reduction, and bar pressure.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides engineering tools to calculate how bar movement impacts kite performance. Use simulate_full_depower_cycle to get a complete mechanical profile, or individual tools like calculate_aoa_change and estimate_power_reduction to analyze specific variables like angle of attack and lift loss. It accounts for bridle geometry and pulley friction to provide accurate physical simulations for kiteboarding design.

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

calculate_aoa_change

Determines how much the kite's angle of attack changes based on the rider's physical movement

calculate_bar_pressure

Estimates the physical effort required by the rider to pull the bar

estimate_power_reduction

Predicts the percentage of lift lost as the kite is depowered

simulate_full_depower_cycle

Provides a comprehensive summary of the mechanical transformation from a specific bar pull

See how to talk to your AI agent using Kite Depower Mechanics.

Calculate the full depower cycle for a 10cm bar throw with a 20m line, 0.5 bridle factor, FOIL kite, and 0.1 pulley friction.

The depower cycle results in an angle of attack change of 0.25 degrees, a power reduction of 5%, and a bar pressure of 12.5 Newtons.

How much power is lost if the angle of attack changes by 2 degrees on a LEI kite?

The power reduction for a LEI kite with a 2 degree angle of attack change is 15%.

What is the angle of attack change for a 5cm bar throw with a 15m line and 0.8 bridle factor?

The angle of attack change is 0.27 degrees.

You can use the `simulate_full_depower_cycle` tool to receive a complete summary including angle of attack change, power reduction, and bar pressure in one call.

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