
Digital Twin Irrigation District: Focusing on 6 core businesses like water forecasting and scheduling. It builds a virtual model based on regional, crop, and soil differences, driven by real-time sensor data for synchronous simulation and virtual-real interaction, to improve irrigation efficiency and precision.
The Digital Twin Irrigation District focuses on core businesses including water supply-demand forecasting and decision-making, water resource allocation and scheduling, flood and drought disaster prevention, water metering and fee collection, project management, and water public services, and establishes an overall framework. Based on regional differences, crop types and soil conditions within the irrigation area, a virtual irrigation model is constructed. Driven by real-time data collected by sensors, the model conducts dynamic calculation, synchronous simulation, virtual-real interaction and iterative optimization with the physical irrigation district, so as to improve irrigation efficiency and precision.


Quarterly macro monitoring of multiple irrigation elements via optical satellites, combined with deformation information obtained by SAR satellites, to achieve full-area monitoring.

Breaking the single-scale limitation of traditional hydraulic models, realizing dynamically coupled simulation from field plots to the entire irrigation district.

Dynamically generating optimal irrigation plans based on crop water demand, weather and soil conditions to reduce water waste.

Empowered by 3D visualization technology, the platform intuitively displays irrigation operation indicators and supports data review and scenario simulation.
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