Kite Loop Physics Engine

Kite Loop Physics Engine MCP Connector for Claude

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Calculates g-force, body load, and peak duration for kiteboarding loops.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides precise physical calculations for kiteboarders performing maneuvers. It uses centripetal acceleration formulas to determine the peak g-force, the total force in Newtons applied to the rider's body, and the duration of peak intensity. You can use get_peak_g_force to find maximum acceleration, get_rider_body_load for total physical impact, get_peak_duration to estimate time at peak intensity, or compare_loop_impact to evaluate different loop configurations like downloops versus heli loops.

kiteboardingphysicsg-forceaerodynamicsextreme-sports

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

get_peak_g_force

Calculates the maximum g-force experienced by the rider at the tightest point of the loop

compare_loop_impact

Compares the physical intensity between two different loop configurations

get_peak_duration

Estimates how long the rider will experience the peak intensity of the loop

get_rider_body_load

Calculates the total force in Newtons applied to the rider's body during the maneuver

See how to talk to your AI agent using Kite Loop Physics Engine.

What is the peak g-force for a kite moving at 15 m/s in a 10m radius downloop?

The peak g-force for a 15 m/s kite speed with a 10m radius downloop is 2.34g.

How much force will a 75kg rider feel during a 12m radius heli loop at 18 m/s?

The total force applied to a 75kg rider in this scenario is 1452.5 Newtons.

How long is the peak intensity for a 12 m/s kite in a 5m radius loop?

The rider will experience peak intensity for approximately 0.42 seconds.

You can use the `get_peak_g_force` tool by providing the kite speed, loop radius, and the loop type (downloop or heli).

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