Hydrofoil Risk Assessment Engine

Hydrofoil Risk Assessment Engine MCP Connector for Claude

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Predict and mitigate ventilation and cavitation risks for hydrofoil vessels.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides high-fidelity risk assessment for hydrofoil operations. It allows AI agents to monitor and predict critical stability issues like ventilation and cavitation. Using tools like calculate_ventilation_risk and check_cavitation_limits, agents can determine safe speed thresholds, assess stability during maneuvers with analyze_maneuver_stability, and retrieve performance data via get_design_performance_envelope. This ensures safe vessel operation by providing actionable recovery instructions based on real-time environmental and design data.

hydrofoilventilationcavitationmarine-safetyvessel-stability

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

analyze_maneuver_stability

Assesses how a planned change in direction (turn) will affect the current stability envelope

calculate_ventilation_risk

Determines the immediate risk level of air being sucked into the hydrofoil

check_cavitation_limits

Evaluates if the foil is operating in a regime where vapor bubbles will form on the foil surface

get_design_performance_envelope

Retrieves the theoretical safety limits for a specific wing geometry

See how to talk to your AI agent using Hydrofoil Risk Assessment Engine.

What is the ventilation risk for a foil traveling at 15 m/s with 40% mast immersion and a 50m turn radius?

The ventilation risk score is 7. Your maximum safe speed is 12 m/s. Recommended action: Reduce speed immediately.

Is my wing design 'Alpha-V1' safe at 20 m/s with 80% immersion?

The cavitation risk score for 'Alpha-V1' at 20 m/s is 2. The safe operating limit is 25 m/s. You are operating safely.

How will a turn with a 20m radius affect my stability at 10 m/s and 50% immersion?

The stability impact is Critical. The recommended maximum radius to maintain stability at this speed is 45m.

The engine uses `calculate_ventilation_risk` to evaluate foil speed, mast immersion, turn radius, surface chop, and mast angle to produce a risk score and safe speed threshold.

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