Foil Carve Physics

Foil Carve Physics MCP Connector for Claude

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Calculate hydrofoil carving mechanics, bank angles, and structural loads.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides precise physics calculations for hydrofoil riders. Use calculate_carve_physics to determine the required bank angle, g-force, and mast load for any maneuver. You can also use analyze_stability_limits to check if a turn is stable, estimate_rider_effort to gauge physical demand, and get_structural_safety_check to evaluate equipment risk based on mast loading.

hydrofoilphysicscarvingmechanicsstructural-load

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

get_structural_safety_check

Evaluates the risk of equipment failure based on mast loading

analyze_stability_limits

Determines if a specific turn is stable based on the equipment configuration

calculate_carve_physics

Provides a complete physics profile of a specific carving maneuver

estimate_rider_effort

Estimates the physical demand on the rider for a given maneuver

See how to talk to your AI agent using Foil Carve Physics.

Calculate the physics for a turn at 5 m/s with a 10m radius, 120cm mast, 80kg rider, and 5.0 aspect ratio.

The required bank angle is 15.4 degrees, the rider will experience 1.2g, and the mast load is 980 N.

Is a turn with a 5m radius, 4 m/s speed, 4.0 aspect ratio, and 1.0 stabilizer factor stable?

No, the maneuver is unstable with a stability margin of -0.15.

What is the safety rating for a mast load of 2500N on a 90cm mast?

The safety rating is Caution, with a load percentage of 75%.

Use the `calculate_carve_physics` tool with your speed, turn radius, mast length, weight, and aspect ratio to find the necessary bank angle.

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