Board Speed Record Simulator

Board Speed Record Simulator MCP Connector for Claude

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Calculate theoretical maximum speeds for kitefoiling and kiteboarding setups.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides high-precision physics simulations to determine the theoretical velocity limits for kite-based speed attempts. By modeling the balance between propulsive force and hydrodynamic resistance, users can predict performance across different equipment configurations. Use calculate_max_speed to find the top velocity for a specific setup, compare_equipment_efficiency to evaluate different foils, estimate_rider_impact to see how mass affects speed, and get_environmental_drag_multiplier to account for water surface conditions.

kitefoilingkiteboardingspeed-recordphysics-enginehydrodynamics

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

calculate_max_speed

Calculate the highest theoretical speed for a specific setup

compare_equipment_efficiency

Compare speed potential between two different fin types

estimate_rider_impact

Estimate how rider weight changes the theoretical max speed

get_environmental_drag_multiplier

g., glassy, light_chop, heavy_chop). Get the drag multiplier for a specific water condition

See how to talk to your AI agent using Board Speed Record Simulator.

What is the highest theoretical speed I can reach with a 12m2 kite, 10m/s wind, 75kg rider, a foil board, glassy water, and a racing foil?

The theoretical maximum speed for your setup is 24.5 m/s.

How much speed will I lose if I switch from a racing_foil to a standard_foil with a 10m/s wind and a 12m2 kite?

Switching to a standard_foil will result in a speed reduction of 1.2 m/s.

How does my weight affect my potential top speed if I increase from 70kg to 80kg with a 12m2 kite and 10m/s wind?

Increasing your weight to 80kg will result in a speed delta of -0.8 m/s.

The calculations use a physics-based model that balances kite propulsion against hydrodynamic and aerodynamic drag based on the provided equipment and environmental inputs.

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