Reservoir Limit Test

Reservoir Limit Test MCP Connector for Claude

A+

Identify geological boundaries, drainage areas, and aquifer support using pressure transient analysis.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized tools for reservoir engineering. It allows AI agents to analyze pressure transient data to determine reservoir limits. Use get_boundary_type to identify no-flow or constant pressure boundaries, calculate_drainage_area to estimate the active drainage volume, detect_faults_and_channels to find linear geological features, and evaluate_aquifer_support to quantify water drive influence.

reservoirpressure-transientgeologyoil-and-gasengineering

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

calculate_drainage_area

Estimates the total area of the reservoir currently being drained by the well

detect_faults_and_channels

Identifies the presence of linear features like faults or narrow channel geometries

evaluate_aquifer_support

Quantifies the degree to which an external water source is maintaining reservoir pressure

get_boundary_type

Identifies the nature of the reservoir limits based on pressure trends

See how to talk to your AI agent using Reservoir Limit Test.

What is the boundary type for this pressure data?

The reservoir exhibits a no-flow boundary with a confidence score of 0.85.

Calculate the drainage area for the current well.

The estimated drainage area is 450 acres with a shape factor of radial.

Are there any faults detected in this flow regime?

Yes, a linear fault has been detected with an orientation of 45 degrees.

You can use the `get_boundary_type` tool. By providing pressure data and production history, the tool analyzes the pressure derivative to detect sudden increases that indicate a no-flow boundary.

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