Pipeline Hydraulic Design

Pipeline Hydraulic Design MCP Connector for Claude

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Professional steady-state hydraulic modeling and pump station optimization.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides professional engineering tools for steady-state hydraulic modeling of liquid pipelines. It allows engineers to calculate pressure profiles, optimize pump station placement, and determine the most cost-effective pipe diameters. Use analyze_pressure_profile to map pressure along terrain, optimize_pump_placement to ensure safe operating limits, find_optimal_diameter for cost-effective sizing, and calculate_batch_impact to predict how different fluid properties affect the hydraulic gradient in multi-product lines.

hydraulicspipelinefluid-dynamicspump-optimizationengineering-tools

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

analyze_pressure_profile

Determine the pressure at various points along a pipeline based on fluid properties and terrain

calculate_batch_impact

Predict how the hydraulic profile shifts when different products are pumped through the same line

find_optimal_diameter

Find the most cost-effective pipe diameter for a specific flow requirement

optimize_pump_placement

Determine where pump stations must be located to keep pressure within safe operating limits

See how to talk to your AI agent using Pipeline Hydraulic Design.

Calculate the pressure profile for a 50km pipeline with a flow rate of 500 m3/h, a diameter of 0.5m, and this elevation profile: [{'distance': 0, 'elevation': 10}, {'distance': 25, 'elevation': 50}, {'distance': 50, 'elevation': 20}]. Fluid density is 850 and viscosity is 0.001.

The pressure profile shows a peak pressure of 45.2 bar at the 25km mark due to elevation changes, with a total head loss of 4.8 bar over the full length.

Where should I place pump stations for a 100km pipeline to keep pressure between 5 and 25 bar?

Pump stations are required at 35km and 72km to maintain the hydraulic gradient within the specified limits.

What is the best pipe diameter for a 2000 m3/h flow rate with a target pressure drop of 2 bar/km?

The optimal diameter for these requirements is 0.85 meters.

It performs steady-state hydraulic analysis, including pressure profile calculation, pump station optimization, and pipe diameter sizing.

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