Wine Oxygen Ingress Model

Wine Oxygen Ingress Model MCP Connector for Claude

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Predictive modeling for oxygen ingress and wine aging trajectories.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides a predictive modeling engine to simulate oxygen transmission through different cork materials. It allows AI agents to estimate wine aging trajectories by calculating annual oxygen ingress using calculate_annual_ingress, predicting when oxygen levels reach critical thresholds with predict_oxygen_saturation_timing, and determining the chemical state of the wine via predict_wine_evolution_state. It also accounts for thermal fluctuations using simulate_temperature_impact to adjust ingress and consumption rates.

wineoxygencorkmodelingchemistry

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

predict_wine_evolution_state

Categorize the predicted chemical state of the wine

simulate_temperature_impact

Adjust ingress and consumption parameters based on thermal fluctuations

calculate_annual_ingress

Calculate the total mass of oxygen entering the wine in a single year

predict_oxygen_saturation_timing

Estimate when oxygen levels in the wine will reach a critical threshold

See how to talk to your AI agent using Wine Oxygen Ingress Model.

Calculate the annual oxygen ingress for a natural cork with an OTR of 0.5, stored horizontally at 15 degrees Celsius.

The annual oxygen ingress for the natural cork is 12.45 mg/L.

Predict the wine evolution state for a high sensitivity wine with 50 mg/L cumulative oxygen exposure.

The predicted evolution state is Oxidative.

When will the oxygen reach saturation if initial dissolved oxygen is 0.5 mg/L, annual ingress is 10 mg/L, and consumption is 2 mg/L?

The oxygen saturation is predicted to occur in 0.6 months.

The model supports natural, technical, and agglomerate cork types.

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