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水力发电学报 ›› 2025, Vol. 44 ›› Issue (6): 12-21.doi: 10.11660/slfdxb.20250602

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三峡库区泥沙絮凝沉降试验研究

  

  • 出版日期:2025-06-25 发布日期:2025-06-25

Laboratory study on flocculation and settling behaviours of sediment from Three Gorges Reservoir

  • Online:2025-06-25 Published:2025-06-25

摘要: 三峡库区原型沙测试表明,约80%淤积泥沙粒径小于20 ?m,然而,大量的黏性细沙在库区沉降时是否会形成絮团尚不清楚。为此,本研究设计了一种同轴旋转双筒絮凝沉降装置,近似模拟库区水沙状况,以非接触方式观测了泥沙絮凝沉降过程,运用图像技术识别沉降颗粒的大小与沉速。结果显示,试验观测到的颗粒沉速与同粒径纯泥沙颗粒的沉速差异显著,且部分沉降颗粒的直径远大于初始输入沙的最大粒径,表明库区泥沙颗粒会形成絮团;基于此,构建了泥沙絮凝体沉降时的雷诺数与阻力系数的关系,运用分形理论求得了絮凝体密度,建立了絮凝体有效密度与粒径的关系,提出了絮凝体沉速的计算方法,且计算与实测沉速符合较好。

关键词: 三峡库区, 泥沙, 絮凝体, 密度, 沉速

Abstract: Analysis of the prototype sediment collected from the Three Gorges reservoir (TGR) indicates roughly 80% of the accumulated sediment is less than 20 μm in size, but it remains unclear whether such sediment mixture could form flocs while settling. This study has designed a coaxial double-cylinder rotational flocculation device for non-intrusive observation of the flocculation and settling of sediment collected from TGR, and conducted two series of tests, modelling the water-sediment conditions of the reservoir in the laboratory and adopting the image technology to identify settling particles. The results show that the measured settling velocity of particles is significantly different from those of single sediment particles of the same size, and a significant portion of settling particles exceeds the maximum size of the input sediment, indicating the flocs of TGR sediment would form in the prototype reservoir. Then, we develop a relationship between Reynolds number and drag coefficient for the flocculated sediments, and derive the density of the flocs based on the fractal theory, and a relationship between flocs’ effective density and size. Finally, we develop two methods for calculating the settling velocity of sediment-induced flocs, and verify them against measurements, showing a satisfactory agreement.

Key words: Three Gorges Reservoir, sediment, floc, density, settling velocity

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