极端干旱下河流浅滩-深潭式仿自然生境修复技术

    Shallow-deep pool nature-like habitat restoration technique for rivers under extreme drought

    • 摘要: 针对一品河流域因极端干旱与小水电建设引发的生物栖息地退化问题,选取三巧湾电站至百节电站段为研究对象,运用二维数值模型,结合实测水文与地形数据,采用淹没直立式正挑丁坝构建浅滩-深潭式仿自然生境修复模型,分析水深、流速等水动力指标的变化特征;基于Leslie矩阵建立鱼类种群数量模型,评估极端干旱影响下生境修复后的鱼类种群恢复效果,并通过实地生境营造前后的鱼类资源监测数据对改善效果进行验证。结果表明:在2022年极端干旱期间最小日平均流量为0.10 m3/s的条件下,三巧湾减水河段丁坝坝前及坝间水深由0.36~0.38 m提升至0.43~0.75 m,桥口坝减水河段水深由0.14~0.47 m提升至0.70~1.30 m;坝头流速增高、坝间流速降低,形成规则的水流分布格局;极端干旱导致鱼类种群数量骤减,其中幼鱼群体受影响最为显著;生境修复后,鱼类种群数量显著增长。研究成果可为河流生境修复提供参考。

       

      Abstract: To address the degradation of aquatic habitats caused by extreme drought and small hydropower development in the Yipin River Basin, this study selected the reach from the Sanqiaowan Hydropower Station to the Baijie Hydropower Station as the research object. A two-dimensional numerical model was established using measured hydrological and topographical data. A nature-like habitat restoration model with shallow-deep pool configurations was constructed using submerged, orthogonally arranged spur dikes. The variations in hydrodynamic indicators, including water depth and flow velocity, were analyzed. A fish population dynamics model based on the Leslie matrix was developed to evaluate the recovery of fish populations after habitat restoration under the impact of extreme drought. The restoration effects were validated using field monitoring data of fish resources before and after habitat restoration. The results showed that during the extreme drought event in 2022, when the minimum daily average flow rate was 0.10 m3/s, the water depth in front of and between the spur dikes in the Sanqiaowan water-reducing reach increased from 0.36~0.38 m to 0.43~0.75 m, and the water depth in the Qiaokou Dam water-reducing increased from 0.14~0.47 m to 0.70~1.30 m. Flow velocity increased at the dike heads and decreased between the dikes, forming a regular flow distribution pattern. The extreme drought caused a sharp decline in fish populations, with juvenile fish being the most severely affected; after habitat restoration, fish populations increased significantly. The research results can provide reference for river habitat restoration.

       

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