twintip-edge-hold

twintip-edge-hold MCP Connector for Claude

A+

Simulate hydrodynamic performance, grip force, and pop potential for twin-tip boards.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized hydrodynamic simulation tools for twin-tip wakeboard and surfboard designs. It allows AI agents to calculate critical performance metrics including calculate_grip_force to determine lateral stability, calculate_max_edging_angle to find the washout threshold, and calculate_pop_potential to evaluate vertical launch capability. Users can also generate a complete performance profile using analyze_performance_summary to understand how fin configuration, rocker type, and board geometry interact under specific riding speeds.

wakeboardsurfboardhydrodynamicsphysicstwin-tip

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

analyze_performance_summary

Provides a holistic view of how a specific setup will behave across all three performance metrics

calculate_grip_force

Determines the lateral force (grip) the board's edge provides against the water

calculate_max_edging_angle

Finds the steepest angle a rider can tilt the board before the edge loses grip

calculate_pop_potential

Evaluates the explosive vertical launch capability of the board

See how to talk to your AI agent using twintip-edge-hold.

Calculate the grip force for a board with 5cm fins, quad configuration, 40cm width, and 5m/s speed with a concave.

The calculated grip force is 142.5 N with a high stability rating.

What is the maximum edging angle for a continuous rocker board with 4cm fins and 4m/s speed?

The maximum edging angle is 28.4 degrees.

Evaluate the pop potential for a three-stage rocker board with a concave at 6m/s speed.

The pop score is 8.5 with a lift efficiency of 0.78.

You can calculate grip force, maximum edging angle, pop potential, and a complete performance summary.

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