Optimizing reservoir operation incorporating ecological demand and stability requirement

Author:

Qiu Jun12,Ma Cang3,Wang Hong‐Ru4,Li Hou‐Jun3,Li Fang‐Fang14ORCID

Affiliation:

1. State Key Laboratory of Plateau Ecology and Agriculture Qinghai University Xining China

2. College of Water Sciences Beijing Normal University Beijing China

3. School of Water Resources and Electric Power Qinghai University Xining China

4. College of Water Resources and Civil Engineering China Agricultural University Beijing China

Abstract

AbstractThe construction and operation of large‐scale reservoirs alter the natural river flow regimes and destroy the original suitable reproduction and living conditions of aquatic organisms. Especially during the spawning season, the fluctuating water flow process is particularly important for fish reproduction. A bi‐objective optimization model considering both the environmental flow demand for fish spawning and the stability of hydropower output is established in this study and solved by one of the most widely used algorithms for multi‐objective problems, the Non‐Dominated Sorted Genetic Algorithm‐II. The derived Pareto Front can be used to guide reservoir operation during fish spawning seasons. The model proposed in this paper is applied to the Yangqu Reservoir, currently under construction on the upper Yellow River in China. The results show that the stability of hydropower output can still be improved by 4.80% to 10.56%, even if the environmental flow demand is taken into account. Even for the scheme preferring ecological recovery, the stability of hydropower output can be increased by more than 0.85%.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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