Ventilation Pressure Survey Analyzer

Ventilation Pressure Survey Analyzer MCP Connector for Claude

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Analyzes ventilation pressure survey data to determine friction factors, leakage, and system resistance.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized tools for analyzing ventilation networks in mining or tunnel environments. It allows AI agents to calculate the get_segment_friction_factor for specific airways, determine total calculate_network_resistance for complex loops, quantify air loss using estimate_leakage_loss, and evaluate how evaluate_nvp_impact affects the overall system pressure.

ventilationpressureminingairflowresistance

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

estimate_leakage_loss

Quantifies the air lost to leakage within a specific branch or between two points

evaluate_nvp_impact

Determines how Natural Ventilation Pressure (NVP) affects the total pressure requirement

calculate_network_resistance

Determines the total resistance of the ventilation network or a specific sub-loop

get_segment_friction_factor

Calculates the friction factor for a specific airway segment

See how to talk to your AI agent using Ventilation Pressure Survey Analyzer.

Calculate the friction factor for segment 'A1' with a pressure drop of 50 Pa, air quantity of 100 m3/s, and geometry of length 100m and area 20m2.

The friction factor for segment A1 is 0.015 with a turbulence intensity of low.

What is the total resistance for a network consisting of segments S1 and S2 with specific resistance values?

The total resistance for the specified network is 0.45 Ns2/m8.

How much air is being lost in branch B1 if the intake is 500 m3/s and the exit is 450 m3/s?

The leakage volume in branch B1 is 50 m3/s, which represents a 10% leakage rate.

To use `get_segment_friction_factor`, you need the segment ID, the measured pressure drop, the air quantity, and the segment's geometric properties (length and area).

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