Halfpipe Velocity Entry

Halfpipe Velocity Entry MCP Connector for Claude

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Calculate precise entry speeds, pump timing, and exit velocities for halfpipe riding.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides precision physics calculations for extreme sports athletes. It allows AI agents to determine the exact entry speed required to reach specific air heights by modeling energy conservation and centripetal motion. Use calculate_entry_velocity to find the necessary speed at the base, analyze_pump_window to identify the optimal timing for gaining momentum, predict_exit_velocity to estimate departure speed, and evaluate_safety_threshold to ensure the planned run stays within safe G-force limits.

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

analyze_pump_window

Identifies the optimal timing within the transition to "pump" for extra momentum

calculate_entry_velocity

Determines the minimum speed required at the bottom of the pipe to reach a specific height

evaluate_safety_threshold

Checks if the calculated speeds or heights exceed safe operating limits

predict_exit_velocity

Calculates the speed at which the rider will leave the lip of the pipe

See how to talk to your AI agent using Halfpipe Velocity Entry.

What entry speed do I need for a 3m air height in a 2m tall pipe with a 4m radius?

To achieve a 3m air height with those dimensions, you need an entry speed of 9.45 m/s.

Is it safe to enter at 12 m/s with a 3m radius?

No, an entry speed of 12 m/s with a 3m radius exceeds the safe operating limit due to excessive centripetal force.

When should I pump for extra momentum in a 5m radius transition?

The optimal pumping angle is 42 degrees, with a recommended window duration of 0.45 seconds.

The calculations use standard physical models for energy conservation and centripetal force, accounting for friction and transition efficiency to provide highly reliable estimates for athletes.

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