Vapor Recovery System Design

Vapor Recovery System Design MCP Connector for Claude

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Engineering tool for sizing and evaluating Vapor Recovery Units (VRUs).

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering calculations for designing vapor recovery systems during liquid loading operations. It allows AI agents to determine peak vapor flow using calculate_peak_vapor_flow, validate equipment sizing with evaluate_vru_capacity, predict capture rates via estimate_recovery_efficiency, and ensure environmental regulatory compliance using verify_emission_compliance.

vruvapor-recoveryemissionshydrocarbonsloading-operations

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

calculate_peak_vapor_flow

estimate_recovery_efficiency

Predicts successful vapor capture

evaluate_vru_capacity

Checks if a VRU is sufficient

verify_emission_compliance

Validates system emissions against limits

See how to talk to your AI agent using Vapor Recovery System Design.

Calculate the peak vapor flow for a loading rate of 500 barrels per hour with a generation factor of 0.05 and a composition of {'methane': 0.8, 'ethane': 0.2}.

The peak flow rate is 25.0 units per hour with a gas density profile optimized for light ends.

Is a VRU with a capacity of 100 units sufficient for a peak flow of 85 units?

Yes, the unit is sufficient with a safety margin of 15 units and a capacity utilization of 85%.

What is the expected recovery efficiency if the condensation temperature is -20 degrees Celsius for this composition?

The expected recovery efficiency is 94% with a recovered volume of 47.0 units.

You can use the `calculate_peak_vapor_flow` tool by providing the loading rate, vapor generation factor, and the vapor composition.

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