Infiltration Rate Estimator

Infiltration Rate Estimator MCP Connector for Claude

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Estimates soil infiltration rates and runoff risks using physical soil properties.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized tools for hydrological analysis. It calculates the immediate capacity of soil to absorb water using get_initial_infiltration_rate, determines total water volume via get_cumulative_infiltration, and assesses surface runoff likelihood with estimate_runoff_risk. It also evaluates how soil structure and density interact through analyze_soil_structure_impact to determine porosity and stability.

soilinfiltrationrunoffhydrologyagriculture

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

analyze_soil_structure_impact

Evaluates how soil structure and bulk density interact to affect infiltration potential

estimate_runoff_risk

Assesses the likelihood of surface runoff occurring during a rain event

get_cumulative_infiltration

Determines the total volume of water absorbed by the soil over a specific duration

get_initial_infiltration_rate

Calculates the immediate capacity of the soil to absorb water at the start of a rain event

See how to talk to your AI agent using Infiltration Rate Estimator.

What is the initial infiltration rate for sandy soil with a bulk density of 1.2 and a bare surface?

The initial infiltration rate for the sandy soil is 25.5 mm/hr with an influence factor of 0.8 due to the bare surface condition.

Calculate the total volume of water infiltrated over 2 hours if the initial rate is 30 mm/hr and the final rate is 10 mm/hr using the Horton model.

The total volume of water infiltrated over 2 hours is 42.4 mm.

Assess the runoff risk if the rainfall intensity is 50 mm/hr, current infiltration is 30 mm/hr, moisture is 0.8, and vegetation cover is 10%.

The runoff risk is extreme with a probability of 0.92, primarily driven by high soil saturation and low vegetation cover.

The server supports both Green-Ampt and Horton infiltration models to calculate cumulative water absorption.

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