Kite Loop Mechanics

Kite Loop Mechanics MCP Connector for Claude

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Analyze physical forces, timing, and energy of kiteboarding loops.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides a physics engine for kiteboarding maneuvers. Use analyze_loop_forces to calculate G-forces and centripetal acceleration, estimate_loop_timing to find loop duration, calculate_power_output for energy intensity, and predict_landing_impact to assess safety risks. It models the physical stress of frontside and backside loops based on kite size, wind speed, and entry velocity.

kiteboardingphysicsextreme-sportsmechanicssimulation

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

analyze_loop_forces

Calculates the physical stress and gravitational load experienced by the rider during the maneuver

calculate_power_output

Measures the energetic intensity of the maneuver

estimate_loop_timing

Determines how long the rider will be under the influence of the loop

predict_landing_impact

Evaluates the safety and intensity of the maneuver's conclusion

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

What is the G-force for a 12m2 kite in 15m/s wind with a 10m loop radius at 5m/s entry speed (frontside)?

The calculated G-force for this maneuver is 1.25 Gs.

How long will a 15m radius loop take if I enter at 6m/s?

The estimated loop duration is 7.85 seconds.

Calculate the power output for a 10m2 kite in 12m/s wind with an entry speed of 4m/s.

The power generated is 450 Watts with an energy intensity index of 0.65.

You can use the `analyze_loop_forces` tool by providing the kite size, wind speed, loop radius, entry speed, and direction.

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