Kite Self-Landing Physics Engine

Kite Self-Landing Physics Engine MCP Connector for Claude

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Predict descent speed and impact force for kiteboarders during self-landing maneuvers.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides a specialized physics engine for kiteboarders to predict descent dynamics and impact risks. By modeling the interaction between aerodynamic lift and gravity, it allows users to calculate vertical velocity and impact force based on wind speed, kite size, depower, and angle. Use get_descent_dynamics to determine the landing speed and recommended technique, or validate_landing_safety to assess if the predicted impact is within safe limits. It also includes simulate_depower_effect to project how adjusting depower will change your descent profile.

kiteboardingphysicsaerodynamicssafetywind

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

get_descent_dynamics

Calculates the vertical speed and the resulting impact force for a specific kite configuration

get_surface_absorption_coefficient

Retrieves the physical absorption constant for a specific landing surface

simulate_depower_effect

Allows the user to see how changing the depower setting will affect the descent speed

validate_landing_safety

Evaluates if the current descent conditions are within safe operating limits for a rider

See how to talk to your AI agent using Kite Self-Landing Physics Engine.

What is my descent speed if I have 15 m/s wind, a 12m2 kite, 50% depower, a 45 degree angle, and I am landing on water?

Your calculated descent speed is 2.4 m/s with an impact force of 150 N. A soft touch approach is recommended.

Is it safe to land with a 3.5 m/s descent speed and 400 N impact force?

No, the risk level is High. The predicted impact force exceeds safe limits for this descent speed.

How much will my descent speed decrease if I increase depower from 20% to 60% in 12 m/s wind with a 10m2 kite at 30 degrees?

Increasing depower to 60% will reduce your projected descent speed from 3.1 m/s to 1.8 m/s.

You can use the `get_descent_dynamics` tool. Provide the wind speed, kite size, depower percentage, kite angle, and the surface type (water, sand, or grass) to receive the calculated impact force in Newtons.

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