Board Rocker Effect Analyzer

Board Rocker Effect Analyzer MCP Connector for Claude

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Analyze hydrodynamic performance, planing thresholds, and maneuverability based on hull rocker profiles.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized hydrodynamic analysis for water sports equipment design. It allows AI agents to calculate critical performance metrics such as the calculate_planing_threshold to determine when a board transitions to planing mode. Users can also evaluate_maneuverability to understand how rocker radius and profile types (continuous vs staged) impact agility and stability, or assess_wave_handling to predict performance in calm, chop, or swell conditions. For a complete overview, get_performance_summary provides a holistic view of the board's profile and speed efficiency.

hydrodynamicswater-sportshull-designplaningmaneuverability

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

calculate_planing_threshold

Determines the speed at which the board transitions from displacement mode to planing mode

evaluate_maneuverability

Analyzes how the rocker profile affects the board's turning capabilities

get_performance_summary

Provides a holistic view of the board's performance characteristics

assess_wave_handling

Predicts how the board will perform in varying water surface conditions

See how to talk to your AI agent using Board Rocker Effect Analyzer.

What is the planing threshold for a board with a 2.5m rocker radius and 180cm length at 5m/s?

The board is currently displacing, and the required threshold speed to reach planing mode is 6.2 m/s.

How will a board with a 1.5m rocker radius perform in chop conditions?

In chop conditions, the board has a high chop handling score and provides good impact absorption due to the aggressive rocker.

Compare the maneuverability of a continuous rocker vs a staged rocker with a 2.0m radius.

The staged rocker provides higher agility for tight turns, while the continuous rocker offers superior high-speed stability.

A smaller rocker radius increases the speed required to reach the `calculate_planing_threshold` because the hull creates more drag before lifting.

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