Thermal Recovery Design

Thermal Recovery Design MCP Connector for Claude

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Simulate and optimize thermal enhanced oil recovery (EOR) projects.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for designing thermal enhanced oil recovery (EOR) projects. It allows AI agents to calculate optimal steam injection rates using calculate_steam_injection_rate, design efficient well configurations with design_well_pattern, and predict total yield via estimate_oil_recovery. Additionally, it can quantify energy dissipation through analyze_thermal_losses to ensure project efficiency.

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

analyze_thermal_losses

Quantifies the energy lost to the non-productive layers

calculate_steam_injection_rate

Determines the optimal rate of steam injection required to maintain a stable thermal front

design_well_pattern

Determines the optimal spatial configuration and distance between wells

estimate_oil_recovery

Predicts the total volume of oil that can be successfully recovered

See how to talk to your AI agent using Thermal Recovery Design.

What is the optimal steam injection rate for a reservoir with 50 cP viscosity, 20m thickness, and 2.0 thermal conductivity at 250 degrees?

The optimal steam injection rate is 150.5 units per hour with an energy efficiency of 72%.

Design a five-spot well pattern for a 15m thick reservoir with 100 cP viscosity and a steam injection rate of 200.

The optimal pattern size is 45m with a well spacing of 31.8m using the five-spot configuration.

Estimate the oil recovery for a reservoir 500m deep, 30m thick, with a 100m pattern size, 80 cP viscosity, and 250 steam injection rate.

The expected oil recovery is 1,250,000 barrels with a recovery factor of 35% and an efficiency loss of 12%.

You can use the `calculate_steam_injection_rate` tool by providing the oil viscosity, reservoir thickness, thermal conductivity, and your target temperature.

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