Well Inflow Performance Relationship (IPR) Engine

Well Inflow Performance Relationship (IPR) Engine MCP Connector for Claude

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Calculate oil well inflow performance, AOF, and optimal production rates using Vogel and Fetkovich models.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering calculations for modeling the Inflow Performance Relationship (IPR) of oil wells. It allows AI agents to determine potential flow rates based on reservoir pressure, bubble point pressure, and productivity index. Using tools like calculate_ipr_parameters and get_maximum_flow_capacity, agents can identify if a well is in a single-phase or two-phase regime and calculate the Absolute Open Flow (AOF). The engine also includes optimize_producing_rate to find the best production balance and analyze_gas_drive_impact to evaluate how gas liberation affects flow performance.

reservoir-engineeringoil-welliprvogel-modelproduction-optimization

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

get_maximum_flow_capacity

Calculates the theoretical maximum flow rate (AOF)

calculate_ipr_parameters

Determines the core inflow performance metrics for a well

analyze_gas_drive_impact

Evaluates how solution gas drive affects the inflow performance as pressure declines

optimize_producing_rate

Identifies the optimal flow rate to balance production against pressure drawdown constraints

See how to talk to your AI agent using Well Inflow Performance Relationship (IPR) Engine.

Calculate the IPR parameters for a well with 3000 psi reservoir pressure, 2500 psi bubble point, 1.5 PI, and 2000 psi flowing bottomhole pressure.

The current flow rate is 1500 STB/d and the well is operating in a Two-Phase regime.

What is the maximum flow capacity for a reservoir with 4000 psi pressure, 3000 psi bubble point, and 2.0 PI?

The Absolute Open Flow (AOF) for this well is 8000 STB/d.

Find the optimal rate for a well with 3500 psi reservoir pressure, 2800 psi bubble point, 1.2 PI, and a minimum allowed pressure of 2200 psi.

The optimal rate is 1560 STB/d at a bottomhole pressure of 2200 psi, with a safety margin of 600 psi before two-phase flow begins.

When the flowing bottomhole pressure drops below the bubble point pressure, the `calculate_ipr_parameters` tool automatically switches to Vogel's model to account for gas evolution.

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