LNG Regasification Designer

LNG Regasification Designer MCP Connector for Claude

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Design LNG regasification systems by calculating vaporizer types, heat duties, and seawater flow.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for designing Liquefied Natural Gas (LNG) regasification systems. It allows users to determine the most efficient technology for their specific environment using select_vaporizer_type. Engineers can calculate the total thermal energy required via calculate_heat_duty and determine necessary seawater volumes with calculate_seawater_flow. Additionally, the tool accounts for seasonal demand shifts using analyze_seasonal_variation to ensure system reliability throughout the year.

lngregasificationthermal-engineeringseawatervaporizer

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

analyze_seasonal_variation

Adjusts design parameters to account for changes in demand and environmental conditions across different seasons

calculate_heat_duty

Determines the total thermal energy required for the regasification process

calculate_seawater_flow

Calculates the necessary seawater flow rate to satisfy the heat duty

select_vaporizer_type

Determines the most appropriate regasification technology based on environmental conditions and demand

See how to talk to your AI agent using LNG Regasification Designer.

What vaporizer type should I use if the seawater is 15°C and the air is 25°C with a sendout of 500 units?

The recommended vaporizer type is ORV with a suitability score of 0.85.

Calculate the heat duty for 1000 units of gas, moving from -160°C to 15°C.

The total heat duty required is 450.5 MW.

How much seawater flow is needed for a 300 MW heat duty if seawater enters at 20°C and leaves at 10°C?

The required seawater flow rate is 12500 m3/h.

You can use the `select_vaporizer_type` tool, which evaluates seawater and ambient air temperatures to recommend an ORV, SCV, or AAV.

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