Spill Volume Estimation Engine

Spill Volume Estimation Engine MCP Connector for Claude

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Calculates chemical spill volume, spread area, and containment requirements.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized fluid dynamics tools for environmental safety and containment planning. It allows AI agents to model chemical breach events by calculating the total spilled volume using calculate_spill_volume, predicting the geographic footprint via estimate_spread_area, and determining necessary secondary containment capacity with determine_containment_needs. The engine also accounts for temperature-dependent viscosity changes using get_viscosity_at_temperature to ensure accurate modeling of liquid flow and spread.

chemical-spillcontainmentviscositysafety-planningfluid-dynamics

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

calculate_spill_volume

Determine the total quantity of chemical lost during the breach event

determine_containment_needs

Calculate the required capacity of secondary containment structures

estimate_spread_area

Predict the geographic footprint of the spilled chemical on a flat surface

get_viscosity_at_temperature

Adjust the fluid's viscosity based on temperature changes

See how to talk to your AI agent using Spill Volume Estimation Engine.

Calculate the spilled volume for a tank with a 5m radius, 10m liquid level, a 0.05m² breach, lasting 3600 seconds, with a viscosity of 1.0 and temperature of 20°C.

The total spilled volume is 125.45 cubic meters with an initial flow rate of 0.035 cubic meters per second.

What is the required containment volume for a 50 cubic meter spill with a 1.2 safety factor in a controlled facility?

The required containment volume is 60.0 cubic meters with a recommended dike height of 1.2 meters.

Predict the spread area for a 10 cubic meter spill of a liquid with 0.8 viscosity at 25°C.

The spill will cover a total surface area of 45.2 square meters with a maximum radius of 3.79 meters.

Temperature changes the fluid's viscosity. You can use `get_viscosity_at_temperature` to find the adjusted viscosity, which then influences the flow rate in `calculate_spill_volume` and the footprint in `estimate_spread_area`.

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