Dewatering Flow Rate Calculator

Dewatering Flow Rate Calculator MCP Connector for Claude

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Calculate hydraulic requirements, well configurations, and pump needs for groundwater dewatering.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides essential geotechnical tools for managing groundwater during excavation. It allows AI agents to calculate the total water volume to be removed using calculate_flow_rate, determine the physical layout of wells with calculate_well_configuration, and specify mechanical equipment needs via calculate_pump_requirements. It also includes evaluate_boundary_impact to adjust flow rates based on environmental constraints like nearby rivers.

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

calculate_flow_rate

Determines the total volume of water that must be removed per minute to achieve the target drawdown

calculate_pump_requirements

Determines the mechanical pump equipment necessary to move the calculated flow

calculate_well_configuration

Determines the number of wells needed and how far apart they should be placed

evaluate_boundary_impact

Adjusts the expected flow rate based on environmental constraints like nearby water bodies

See how to talk to your AI agent using Dewatering Flow Rate Calculator.

Calculate the flow rate for an excavation 50m long, 30m wide, with a groundwater level of 10m, a required drawdown of 5m, permeability of 0.0001 m/s, and a radius of influence of 100m.

The calculated total flow rate is 1,250 L/min, with a theoretical drawdown of 5.0m and a total water volume removed of 450 cubic meters.

I need to know how many wells to install for a flow rate of 500 L/min if each well has a capacity of 150 L/min and the excavation perimeter is 200m.

You will need 4 wells, which will be spaced 50 meters apart along the perimeter, providing a redundancy factor of 1.2.

How many pumps are required for a flow of 1000 L/min if each pump handles 400 L/min and I want a 20% safety margin?

You will need 3 pumps, providing a total capacity of 1200 L/min with a 83.3% utilization rate.

Use the `calculate_flow_rate` tool by providing the excavation dimensions, soil permeability, and required drawdown.

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