Underground Gas Storage Design

Underground Gas Storage Design MCP Connector for Claude

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Design and size underground natural gas storage facilities.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides technical tools for modeling and sizing underground natural gas storage (UGS) facilities. It allows engineers to calculate working gas capacity, determine necessary well counts, and estimate compressor requirements for various geological formations including salt caverns, depleted fields, and aquifers. Use get_storage_capacity to find usable gas volumes, calculate_well_requirements for well planning, estimate_compressor_needs for injection pressure analysis, and validate_site_feasibility to confirm if a site meets specific operational constraints.

natural-gasstoragereservoirinfrastructureengineering-tools

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

calculate_well_requirements

estimate_compressor_needs

get_storage_capacity

validate_site_feasibility

See how to talk to your AI agent using Underground Gas Storage Design.

Calculate the working gas capacity for a salt cavern with a volume of 500 million cubic meters and a cushion gas ratio of 0.3.

The working gas capacity for the salt cavern is 350,000,000 cubic meters.

How many wells are needed for a target rate of 50 million cubic meters per day if each well can handle 12 million cubic meters per day in a depleted field?

You will need 5 wells to meet the target rate.

Estimate the compressor needs for injecting gas into an aquifer with a target pressure of 150 bar and a current pressure of 100 bar.

The required pressure differential is 50 bar and the compression ratio is 1.5.

The server supports salt caverns, depleted fields, and aquifers.

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