Platform Sizing & Economics

Platform Sizing & Economics MCP Connector for Claude

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Optimize offshore platform selection and physical dimensions based on production and environment.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized tools for offshore engineering economics. It allows users to determine the most efficient platform type using get_optimal_configuration, calculate physical footprints with estimate_deck_dimensions, perform full lifecycle cost analysis via calculate_lifecycle_costs, and assess environmental risks through analyze_metocean_impact. It balances production profiles against CAPEX, water depth, and metocean conditions to guide structural decisions.

offshorecapexplatformengineeringmetocean

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

analyze_metocean_impact

Evaluates how environmental conditions will drive up the structural weight and costs

calculate_lifecycle_costs

Provides a full economic breakdown of the platform's total investment lifecycle

estimate_deck_dimensions

Calculates the physical footprint and deck area needed to support the production equipment

get_optimal_configuration

Determines the most economically efficient platform type based on environment and production needs

See how to talk to your AI agent using Platform Sizing & Economics.

What is the best platform type for a site with 500m water depth and 50,000 annual production at medium metocean severity?

The optimal configuration for these conditions is a floating platform.

Calculate the deck area for a fixed platform with 20,000 annual production and 5 wells.

The required deck area is 4,500 square meters with a topside weight capacity of 2,500 tonnes.

What are the lifecycle costs for a floating platform with 3,000 tonnes topside weight at 400m depth?

The total CAPEX is $450,000,000, consisting of $250,000,000 for fabrication, $150,000,000 for installation, and $50,000,000 for decommissioning.

You can use the `get_optimal_configuration` tool, providing the water depth, expected annual production, and metocean severity.

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