Foil Breach Recovery Dynamics

Foil Breach Recovery Dynamics MCP Connector for Claude

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Simulate hydrofoil breach physics and calculate recovery success.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized computational tools for hydrofoil riders to simulate the physical dynamics of a 'breach'--the moment a foil leaves the water surface. By analyzing breach speed, wing area, rider weight, and exit angle, the server calculates critical recovery metrics including recovery time, altitude loss, and success probability. Use calculate_breach_impact to assess the immediate physical consequences, simulate_wing_efficiency to evaluate how different wing designs like high-aspect or racing wings handle the transition, and evaluate_rider_skill to factor in technical proficiency. Finally, get_recovery_summary provides a clear risk assessment and actionable recommendations for the rider.

hydrofoilfoilingphysicsracingaerodynamics

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

calculate_breach_impact

Determine the immediate physical consequences of the breach event

evaluate_rider_skill

Adjust the recovery success based on the rider's technical proficiency

get_recovery_summary

Provide a human-readable assessment of a specific breach scenario

simulate_wing_efficiency

Evaluate how different wing designs influence the stability of a breach recovery

See how to talk to your AI agent using Foil Breach Recovery Dynamics.

I just breached at 15 m/s with a 1200 cm² wing, weighing 80 kg, at a 10 degree angle. What are my recovery stats?

The recovery time is 1.2 seconds with an altitude loss of 0.8 meters. Your success probability is 0.85.

How stable is a racing wing with 1500 cm² area during a breach?

The racing wing design provides a lift coefficient of 0.45, a drag coefficient of 0.25, and a stability rating of 0.6.

Give me a summary for a breach with 2.5m altitude loss and 0.3 success probability.

Risk Level: Critical. Status: Crash Imminent. Recommendation: Prepare for impact.

A breach occurs when the foil wing loses contact with the water surface, transitioning from fluid-based lift to aerodynamic lift, which can lead to a sudden loss of stability.

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