Method for configuring slope regulation and storage measures based on flood regulation and storage capacity and water consumption control

The method optimizes slope regulation and storage measures using a genetic algorithm to balance flood regulation, storage capacity, and water consumption, addressing the lack of comprehensive solutions in existing studies and enhancing flood control and water resource management in river basins.

NL2040264B1Active Publication Date: 2026-07-14CHINA INST OF WATER RESOURCES & HYDROPOWER RES
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Patent Information

Application Number
NL2040264
Authority / Receiving Office
NL · NL
Patent Type
Patents
Current Assignee / Owner
Priority Date
2024-06-13
Filing Date
2025-04-29
Publication Date
2026-07-14
Estimated Expiration
2045-04-28

AI Technical Summary

Technical Problem

Current studies lack a comprehensive method for optimizing the configuration of slope regulation and storage measures to balance flood regulation, storage capacity, and slope water consumption, which is crucial for effective flood control and water resource management in river basins.

Method used

A method utilizing a genetic algorithm to optimize slope regulation and storage measures by balancing flood regulation and storage capacity improvement with slope water consumption control, involving data collection, model construction, and genetic algorithm computation to determine optimal slope gradients and vegetation coverage for maximum flood regulation and storage capacity while minimizing water consumption.

Benefits of technology

This approach achieves a balanced relationship between flood regulation and storage capacity improvement with minimal slope water consumption, maximizing the comprehensive benefit for flood control and water resource management in river basins.

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Abstract

Provided is a method for configuring slope regulation and storageneasuresbasedmnlfloodregulationandstoragecapacity and.water consumption control, including the following steps: Sl, collecting and organizing precipitation data of a basin; SZ, constructing an optimized configuration model based on a balance between flood regulation and storage capacity improvement and slope water consumption control; S3, initializing settings; S4, computing an optimal comprehensive benefit of the slope regulation and storage measures with a genetic algorithm; and S5, determining whether a number of iterations is maximized; if the number of iterations is maximized, terminating an iteration and.outputting data, such thateacomputationijscompleted;andijîthenumber<fiîiterations is not maximized, returning to the S4, and restarting the computation. The optimized configuration model of this application can resolve a balanced.relationship between flood regulation and storage capacity improvement and slope water consumption control.
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