Crude Oil Stabilization Engine

Crude Oil Stabilization Engine MCP Connector for Claude

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Simulate crude oil stabilization and RVP reduction processes.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized tools for petroleum process engineering. It allows AI agents to perform flash equilibrium calculations, design stabilization columns to meet specific Reid Vapor Pressure (RVP) targets, evaluate light ends recovery efficiency, and predict the physical properties of stabilized crude oil. Use design_stabilizer_column to determine required trays and reboiler duty, or calculate_flash_equilibrium for immediate phase separation analysis.

crude-oilrvpstabilizationchemical-engineeringhydrocarbons

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

calculate_flash_equilibrium

Determine immediate phase separation of a crude stream

design_stabilizer_column

Design physical parameters of a stabilization column

evaluate_light_ends_recovery

Quantify efficiency of light ends recovery

predict_stabilized_properties

Predict detailed profile of resulting liquid crude

See how to talk to your AI agent using Crude Oil Stabilization Engine.

Design a stabilization column for a crude with 10% methane and 5% ethane at 5000 kg/h and 2 bar to reach an RVP of 10 psi.

The stabilization column design requires 12 trays and a reboiler duty of 450 kW to achieve the target RVP of 10 psi.

What is the phase separation for a crude stream at 25 degrees Celsius and 1 bar?

The flash calculation results in a liquid fraction of 0.92 and a vapor fraction of 0.08.

How much light ends were recovered if the feed was 1000 kg/h and the overhead gas was 50 kg/h?

The recovery efficiency is 85% with 42.5 kg of light ends recovered.

Use the `design_stabilizer_column` tool by providing the crude composition, the target RVP, the feed flow rate, and the operating pressure.

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