HomeAgronomy & Soil PhysicsPrecision Irrigation

3D Precision Agriculture Field Simulator

3D precision-agriculture simulator: a survey drone flies over a deforming crop-yield terrain, and variable-rate irrigation raises the canopy only where soil-moisture sensors report a deficit, compared live against uniform blanket irrigation.

Agronomy & Soil Physics3DEasy60 FPS📱 Mobile-adapted⇄ 2D version
3d-precision-agriculture-agritech ↗ Open standalone

This 3D simulator renders a field as a deforming crop-yield terrain: each column's height tracks the health of the crop growing there, and its colour tracks soil moisture. A survey drone flies a genuine row-by-row sweep above the canopy, and only the columns it has already passed over this sweep are treated as "sensed" — the same sensing constraint a real IoT soil-moisture network or drone multispectral pass has. Compare variable-rate irrigation, which drops water only on columns the sweep reports as dry, against uniform blanket irrigation, which waters every column on every pass, and watch how the yield surface, water used and efficiency diverge between the two strategies.

⚙ Under the hood

Visualize a deformed terrain representing yield potential. A flying drone model moves across the landscape, with falling droplets simulating irrigation.

agritechprecision-agricultureirrigationdrone-simulation

3D · Three.js / WebGL renderer · 60 FPS target · runs fully client-side, no install

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