Pulse Test Interpretation

Pulse Test Interpretation MCP Connector for Claude

A+

Analyzes pressure pulse sequences to characterize reservoir permeability, porosity, and geometry.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized tools for reservoir engineering by interpreting transient pressure pulse tests. It allows AI agents to calculate the permeability-thickness product using analyze_transmissibility, determine storage capacity with analyze_storativity, identify flow regimes via calculate_geometry_type, and quantify propagation delays with estimate_time_lag_effects. It transforms raw pressure amplitude and time interval data into actionable reservoir characterization metrics.

reservoirpressure-pulsepermeabilityporositygeology

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

calculate_geometry_type

Identifies the reservoir flow regime based on the pressure response behavior

analyze_storativity

Calculates the porosity-compressibility product to determine the reservoir's storage capacity

estimate_time_lag_effects

Quantifies the delay in pressure propagation to validate the depth or distance of the test observations

analyze_transmissibility

Calculates the permeability-thickness product based on the relationship between pulse amplitude and response attenuation

See how to talk to your AI agent using Pulse Test Interpretation.

Calculate the transmissibility for these pulse data: amplitudes [10, 8, 6], responses [5, 3, 1], and intervals [1, 1, 1].

The calculated permeability-thickness product (kh) is 2.5.

What is the reservoir geometry for a response showing a specific log-log slope?

The identified flow regime is radial with a confidence score of 0.92.

Determine the storage capacity using a khProduct of 15.0 and these pulse sequences.

The calculated porosity-compressibility product (phi-c) is 0.045.

You can calculate the permeability-thickness product, the porosity-compressibility product, identify reservoir flow geometry, and estimate time lag effects.

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