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杨曲水电站下游河段鱼类栖息地数值模拟研究

Numerical Simulation Study on Fish Habitats in the Downstream Section of Yangqu Hydropower Station.

作者信息

Zhang Qiaoling, Ou Youjie, Wang Weiying, Zhang Guoyong, Liu Zijun, Li Shanshan, Li Guodong

机构信息

State Key Laboratory of eco-Hydraulics in Northwest Arid Region of China Xi'an University of Technology Xi'an China.

China Renewable Energy Engineering Institute Beijing China.

出版信息

Ecol Evol. 2025 Jan 16;15(1):e70756. doi: 10.1002/ece3.70756. eCollection 2025 Jan.

Abstract

To promote the coordinated and sustainable development of hydropower exploitation and ecological environment in the upper reaches of the Yellow River, a fine simulation of the downstream riverway of Yangqu Hydropower Station was carried out to analyze the impact of the changes in water depth and flow velocity on fish habitats after the impoundment of Yangqu Hydropower Station. In this paper, was selected as the target fish species. The fish habitat model was constructed using MIKE21. The habitat quality of the target fish species was graded by the fuzzy logic method with suitable flow velocity and water depth as conditions. The Weighted Usable Area (WUA)-flow response relationship of fish habitats under different qualities was studied, and the ecological flow required by the target fish species was obtained. The results indicated that the suitable ecological flow range, derived from the relationship between the weighted total area of habitats of different qualities and flow variations, ranged from 350 to 1100 m/s. Furthermore, the suitable flow range determined through the proportion of WUA of habitats of different qualities was between 600 and 1150 m/s. After a comprehensive analysis, the final suitable ecological flow range was determined to be 600 to 1150 m/s. The proportion of high-quality habitat WUA ranged from 0.26 to 0.50, As the traffic increased, it first increased and then decreased, and was most affected by changes in traffic, the proportion of medium-quality habitat WUA fluctuated between 0.40 and 0.55, showing an overall upward trend. Meanwhile, the proportion of low-quality habitat WUA increased from 0.11 to 0.21, indicating the smallest impact from flow variations. The research results could provide a certain reference for the ecological scheduling of hydropower stations in the upper reaches of the Yellow River.

摘要

为促进黄河上游水电开发与生态环境的协调可持续发展,对引黄水电站下游河道进行精细模拟,分析引黄水电站蓄水后水深和流速变化对鱼类栖息地的影响。本文选取 作为目标鱼类。利用MIKE21构建鱼类栖息地模型。以适宜流速和水深为条件,采用模糊逻辑方法对目标鱼类的栖息地质量进行分级。研究了不同质量下鱼类栖息地的加权可用面积(WUA)-流量响应关系,得出目标鱼类所需的生态流量。结果表明,不同质量栖息地加权总面积与流量变化关系得出的适宜生态流量范围为350至1100米/秒。此外,通过不同质量栖息地WUA比例确定的适宜流量范围为600至1150米/秒。综合分析后,最终确定适宜生态流量范围为600至1150米/秒。高质量栖息地WUA比例在0.26至0.50之间,随着流量增加,先增加后减小,且受流量变化影响最大;中等质量栖息地WUA比例在0.40至0.55之间波动,总体呈上升趋势;同时,低质量栖息地WUA比例从0.11增加到0.21,表明受流量变化影响最小。研究结果可为黄河上游水电站的生态调度提供一定参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17d4/11739458/49daa8443ae5/ECE3-15-e70756-g002.jpg

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