Reservoir Pressure Predictor

Reservoir Pressure Predictor MCP Connector for Claude

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Predict reservoir pressure decline using the Material Balance Equation.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized tools for reservoir engineering. It uses the Material Balance Equation (MBE) to calculate current reservoir pressure, predict future pressure based on production targets, and analyze decline rates. It accounts for various drive mechanisms including solution gas drive, gas cap drive, and water drive to provide accurate depletion modeling.

reservoirpressureoil-and-gasmaterial-balanceengineering-tools

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

analyze_decline_rate

Evaluates how rapidly the reservoir pressure is dropping relative to production

calculate_current_pressure

Determines the current reservoir pressure based on historical production and active drive mechanisms

calculate_drive_efficiency

Quantifies how effectively different drive mechanisms are contributing to pressure maintenance

predict_future_pressure

Estimates what the reservoir pressure will be after a specific amount of additional production

See how to talk to your AI agent using Reservoir Pressure Predictor.

What is the current pressure if initial pressure was 5000 psi, cumulative production is 2 million barrels, reservoir volume is 10 million barrels, and it is a water drive with an aquifer strength of 0.5?

The current reservoir pressure is 4250 psi.

Predict the pressure when cumulative production reaches 5 million barrels given a current pressure of 4000 psi and 2 million barrels already produced.

The predicted pressure at 5 million barrels of cumulative production is 3150 psi.

Analyze the decline rate for this history: [{pressure: 4000, cumulativeProduction: 100}, {pressure: 3800, cumulativeProduction: 200}] with a time interval of 10.

The average decline rate is 20 psi per 100 barrels of production.

You can use the `calculate_current_pressure` tool by providing the initial pressure, cumulative production, reservoir volume, and the active drive mechanism.

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