In-Situ Stress Measurement

In-Situ Stress Measurement MCP Connector for Claude

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Interprets in-situ stress measurement data from overcoring, hydraulic fracturing, or acoustic emission.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized tools to interpret in-situ stress states in rock masses. It allows AI agents to process complex geotechnical data and derive critical engineering parameters. Using analyze_overcoring_data, agents can calculate full 3D stress tensors from strain gauge readings. The interpret_hydraulic_fracture tool determines principal stress magnitudes and orientations from borehole fracture data. For seismic monitoring, process_acoustic_emission infers stress field characteristics from energy release distributions. Finally, calculate_stress_regime classifies the tectonic environment (Normal, Strike-Slip, or Thrust) based on calculated principal stresses.

stress-analysisrock-mechanicsgeologymining-engineeringgeotechnical-data

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

analyze_overcoring_data

Calculates the full 3D stress tensor from overcoring strain gauge measurements

calculate_stress_regime

Classifies the tectonic stress environment based on existing principal stress calculations

interpret_hydraulic_fracture

Determines principal stress magnitudes and orientations based on fracture occurrence

process_acoustic_emission

Infers stress field characteristics from the spatial distribution of acoustic energy releases

See how to talk to your AI agent using In-Situ Stress Measurement.

Calculate the stress tensor from these strain readings: [{'gauge': 1, 'strain': 0.0001}, {'gauge': 2, 'strain': 0.00015}] and rock elasticity {'E': 50e9, 'nu': 0.25}.

The calculated principal stresses are: Max: 45.2 MPa, Mid: 30.1 MPa, Min: 15.5 MPa, with an azimuth of 120 degrees and dip of 45 degrees.

What is the stress regime if the principal stresses are 50 MPa, 45 MPa, and 10 MPa?

The stress regime is classified as Strike-Slip because the intermediate principal stress (45 MPa) is the vertical component.

Determine the stress from a hydraulic fracture with orientation {'azimuth': 90, 'dip': 0}, breakdown pressure 30 MPa, and depth 500m.

The minimum principal stress is 30 MPa, and the maximum horizontal stress orientation is 90 degrees.

You can provide strain readings from overcoring, fracture orientation and pressure from hydraulic fracturing, or acoustic emission event logs.

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