Main Pain Points of Traditional Irrigation Canal Management
Traditional single‑point flow measurement ignores spatial‑temporal water flow differences and brings large water volume calculation deviation across full canals.
Water allocation merely depends on historical experience without simulation deduction, resulting in low water resource utilization rate.
Water regime, soil moisture and gate‑pump data are isolated, lacking unified data governance middleware platform.
Gates and pumps mostly rely on on‑site manual operation with insufficient remote linkage dispatching capability.
Digital‑twin Driven Precise Metering & Intelligent Scheduling for Irrigation Canals
Deploy water‑level, flow, soil‑moisture and video sensing terminals, collect multi‑link data and perform standardized data governance. Adopt digital‑twin and hydrodynamic model to achieve precise canal metering and 3D visual rehearsal for water allocation schemes, supporting scientific water‑usage dispatching for irrigation districts.
✅ Canal Water‑level & Flow Monitoring
✅ Soil Moisture Monitoring
✅ Reservoir Area Meteorological Monitoring
✅ Real‑time Water Quality Collection
✅ Remote Gate‑pump Monitoring & Control
✅ Irrigation‑area Video Cruise
Full Set IoT Sensors & RTU for Irrigation Canal Metering Supervision
Core Advantages of Precise Canal Water Metering for Irrigation Areas
Equipped with data‑governance and hydraulic algorithms to correct spatial‑temporal deviation and improve full‑canal flow‑measurement accuracy.
Combine 3D real‑scene with hydrodynamic model, rehearse water‑allocation proposals and optimize water‑resource distribution.
Self‑developed complete software‑hardware solution with modular deployment, greatly shortening project implementation cycle.
Unified data middleware platform manages full‑domain devices, supports remote gate‑pump linkage and full‑site visual O&M.
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