Reservoir desilting method and device using fixed jet flow
By deploying fixed jet nozzle arrays and embedded hydrodynamic sensing nodes at the bottom and slope of the reservoir, combined with guide plates and sand discharge port monitoring nodes, the nozzle jet direction, flow field disturbance and sediment transport efficiency are collected and optimized in real time, solving the problems of nozzle jet direction instability and turbulent interference, and achieving efficient and intelligent reservoir dredging effect.
CN121638113APending Publication Date: 2026-03-10TIANJIN YUQIAO RESERVOIR MANAGEMENT CENT
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-24
- Publication Date
- 2026-03-10
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Figure CN121638113A_ABST
Abstract
The invention discloses a reservoir desilting method and device using fixed jet flow, and relates to the technical field of water conservancy and hydropower engineering desilting. According to the method, the flow speed, pressure, mud layer thickness and gradient parameters of water around a nozzle are collected in real time; calculating a jet flow angle compensation coefficient, and identifying a nozzle direction stable state; on the basis of a nozzle set with stable direction, a nozzle group is constructed and a time sequence differential control table is established by combining a topological relation between nodes and disturbance propagation characteristics, so that ordered migration of turbulent flow disturbance is realized; sediment concentration, flow velocity and flow data are collected in a flow guide plate and a sediment discharge port area, and a desilting efficiency index is calculated and used for evaluating sediment transportation continuity and flow guide performance; and a comprehensive operation optimization coefficient is generated through a multivariable adaptive weighted fusion algorithm, and the system automatically executes adaptive regulation or sends out a manual intervention prompt. According to the method, self-monitoring, self-correction and global optimization of the fixed jet system can be achieved, and the reservoir dredging efficiency and the operation stability are remarkably improved.
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