Gas Coning Model

Gas Coning Model MCP Connector for Claude

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Predict gas coning in oil reservoirs and calculate critical production rates.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized tools for reservoir engineers to manage gas coning risks. It allows for the calculation of the calculate_critical_rate to prevent gas breakthrough, estimation of time until gas reaches the wellbore using predict_breakthrough, and simulation of gas-oil ratio trends via simulate_gor_evolution. Additionally, it helps optimize well design through evaluate_well_placement to minimize coning risk based on reservoir anisotropy and thickness.

reservoirconingpetroleumproductionsimulation

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

calculate_critical_rate

Determines the maximum safe production rate to prevent or delay gas coning

evaluate_well_placement

Analyzes how different well completions affect coning risk

predict_breakthrough

Estimates when gas will first reach the wellbore

simulate_gor_evolution

Models the progression of the gas-oil ratio over a production lifecycle

See how to talk to your AI agent using Gas Coning Model.

What is the critical production rate for a reservoir with 100m horizontal permeability, 20m vertical permeability, 50m oil thickness, 30m gas cap, and 10m perforation depth?

The calculated critical rate is 450.5 bbl/day with an anisotropy ratio of 0.2.

If I produce at 500 bbl/day with a critical rate of 450 bbl/day, when will gas breakthrough occur?

Breakthrough is expected in 120 days with an Immediate severity level.

Show me the GOR evolution for a production rate of 400 bbl/day and a critical rate of 450 bbl/day over 10 steps.

The GOR remains stable at 15.0 for all 10 time steps as the production rate is below the critical rate.

You can use `calculate_critical_rate` to find the maximum safe production rate that minimizes gas coning risk.

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