Spray Drift Model

Spray Drift Model MCP Connector for Claude

A+

Estimates pesticide drift distance and risk using agdrift equations.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides precise pesticide movement simulations. It uses the agdrift model to calculate droplet deposition, evaporation effects, and canopy interception. Use calculate_drift_dynamics to model droplet behavior, estimate_canopy_impact to adjust for foliage density, evaluate_drift_risk to classify danger levels, and determine_buffer_zone to establish safe distances for non-target areas.

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

estimate_canopy_impact

Adjust drift predictions based on the presence and density of a target crop

calculate_drift_dynamics

Determine the physical behavior and movement of droplets based on spray and environmental parameters

evaluate_drift_risk

Categorize the level of danger posed by the current application parameters

determine_buffer_zone

Calculate the minimum safe distance required to protect non-target areas

See how to talk to your AI agent using Spray Drift Model.

Calculate the drift dynamics for a fine droplet size with 5 m/s wind speed, 2m boom height, 100 L/ha rate, 25C, and 50% humidity.

The calculated deposition at 10m is 0.045 and at 20m is 0.012, with an evaporation factor of 1.15.

What is the required buffer zone for a High risk level with 4 m/s wind speed and Medium droplets?

The required buffer distance is 35 meters.

Evaluate the drift risk for a deposition of 0.05 at a target with an application rate of 150 L/ha.

The risk level is Moderate with a risk score of 0.65.

Predictions are based on the agdrift model equations, accounting for wind, droplet size, and environmental factors like humidity and temperature.

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