Quantitative Risk Assessment (QRA)

Quantitative Risk Assessment (QRA) MCP Connector for Claude

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Perform safety and environmental impact modeling for oil and gas facilities.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized analytical tools for Quantitative Risk Assessment (QRA) in high-consequence environments like oil and gas facilities. It allows AI agents to calculate critical safety metrics including adjusted hazard frequencies, individual risk, and societal risk. Users can model the impact of hazardous events and generate data for FN curves to visualize cumulative fatality risks. Key tools include analyze_hazard_frequency for statistical likelihood, calculate_individual_risk for proximity-based assessment, evaluate_societal_risk for population impact, and generate_fn_curve_data for graphical risk modeling.

qraoil-and-gassafety-modelingrisk-assessmentindustrial-safety

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

analyze_hazard_frequency

Determines the statistical likelihood of identified hazards

calculate_individual_risk

Estimates the risk to a specific individual based on proximity to hazards

evaluate_societal_risk

Estimates the risk to a population for a specific event

generate_fn_curve_data

Produces the data points required to plot an FN curve for societal risk

See how to talk to your AI agent using Quantitative Risk Assessment (QRA).

What is the adjusted frequency for hazard 'tank_rupture' if the base frequency is 0.01 and the mitigation factor is 0.5?

The adjusted frequency for the tank rupture hazard is 0.005.

Calculate the individual risk for a hazard with frequency 0.02, vulnerability 1.5, and consequence severity 10.

The calculated individual risk is 0.3.

Evaluate the societal risk for an event with frequency 0.05, a population of 200, and a vulnerability factor of 1.2.

The expected fatalities are 240 and the total societal risk is 12.

You can use `analyze_hazard_frequency` to find adjusted hazard probabilities, `calculate_individual_risk` for person-specific risk, and `evaluate_societal_risk` to determine the impact on larger populations.

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