Darcy Flow Equation Engine

Darcy Flow Equation Engine MCP Connector for Claude

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Calculate fluid flow rates, velocities, and pressure profiles in porous media using Darcy's Law.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized computational tools for analyzing fluid movement through porous structures. It implements Darcy's Law to determine flow characteristics across different geometries and regimes. Use calculate_linear_flow for uniform channels, calculate_radial_flow for cylindrical patterns like wellbores, and compare_flow_regimes to evaluate the impact of steady-state versus pseudo-steady state conditions. You can also use get_pressure_profile to pinpoint specific pressure values at any given distance or radius.

darcy-lawporous-mediafluid-dynamicsgeophysicsflow-rate

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

calculate_radial_flow

g., around a wellbore) using Darcy's law. Calculates flow rate and pressure characteristics for fluid moving in a circular or cylindrical pattern

compare_flow_regimes

Compares flow rate between steady-state and pseudo-steady state conditions

get_pressure_profile

Calculates the specific pressure value at a specific point along a flow path

calculate_linear_flow

Calculates flow rate, velocity, and pressure profile for fluid moving through a uniform channel

See how to talk to your AI agent using Darcy Flow Equation Engine.

Calculate the flow rate for a linear flow with permeability 1e-12, area 0.01, pressure gradient 500, and viscosity 0.001 over a distance of 2 meters.

The calculated flow rate is 5.0 m³/s with a velocity of 500 m/s.

What is the flow rate for radial flow with permeability 1e-12, inner radius 0.1, outer radius 0.5, pressure difference 1000, and viscosity 0.001?

The radial flow rate is 125.66 m³/s.

Compare steady-state and pseudo-steady state flow for a linear system with permeability 1e-12, area 0.01, pressure gradient 500, and viscosity 0.001.

The steady-state flow rate is 5.0 m³/s, while the pseudo-steady state flow rate is 4.8 m³/s, representing a 4% difference.

The engine supports both linear flow through uniform channels and radial flow through cylindrical patterns.

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