Beach Start Power Engine

Beach Start Power Engine MCP Connector for Claude

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Calculates physical requirements and optimal parameters for kiteboarding beach starts.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides a specialized calculation engine for kiteboarders to prepare for beach starts. It uses a physics-based model to determine the interaction between aerodynamic lift and static friction. Use get_minimum_wind_threshold to find the lowest wind speed needed for your setup, get_optimal_kite_position to find the best angle in the wind window, calculate_start_timing to estimate movement duration, and simulate_start_success_probability to assess the risk of your current conditions.

kiteboardingphysicswindbeach-startaerodynamics

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

get_minimum_wind_threshold

Determines the lowest wind speed required to initiate a beach start

get_optimal_kite_position

Identifies the ideal angular position for the kite within the wind window to maximize pull

simulate_start_success_probability

Provides a confidence score of whether a beach start will be successful under current conditions

calculate_start_timing

Estimates the time required from the moment the rider begins the pull to the moment movement is achieved

See how to talk to your AI agent using Beach Start Power Engine.

What is the minimum wind speed I need for a 12m2 kite and 80kg weight on hard sand with a twin-tip?

The minimum wind speed required for your setup is 11.5 m/s.

Where should I hold my kite to get the most pull for a beach start?

The optimal kite position is at an angle of 45 degrees within the wind window.

How long will it take to start moving in 15 m/s wind with a 9m2 kite?

The estimated time to achieve movement is 2.4 seconds.

Softer sand increases static friction, meaning you will likely need higher wind speeds or a larger kite to initiate movement.

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