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水力发电学报 ›› 2020, Vol. 39 ›› Issue (5): 72-80.doi: 10.11660/slfdxb.20200507

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三峡大坝修建后荆江河段的悬沙浓度分布特性

  

  • 出版日期:2020-05-25 发布日期:2020-05-25

Characteristics of vertical profiles of suspended sediment in Jingjiang reach under influence of Three Gorges dam

  • Online:2020-05-25 Published:2020-05-25

摘要: 三峡大坝修建后,荆江河段的床沙和悬沙均粗化,而且近底区域(<10%水深)经常出现悬沙浓度远大于垂线均值的情况(即“拖尾”现象)。经典Rouse公式不能很好地描述具有“拖尾”现象的悬移质含沙量的垂向分布特性。对于在荆江河段模拟实测悬沙浓度并进一步计算断面输沙量,目前缺乏一个可靠的评价。本文根据沙市和监利两站在三峡大坝修建前后的实测悬沙浓度资料,深入分析了Rouse公式和韩其为不平衡输沙公式在荆江河段应用存在的问题。结果显示,垂线平均悬沙粒径大于0.1 mm和具有“拖尾”现象的悬沙浓度分布是三峡大坝修建后出现的悬沙浓度分布新特性。悬沙变粗和不平衡输沙的影响导致Rouse公式不再适合用其模拟浓度。此外,这两类悬沙浓度曲线的近底含沙占垂线单宽输沙率的比例均较大,佐证了近底观测的必要性。

关键词: 水利工程, 不饱和输沙, 悬沙浓度分布, 荆江河段, 拖尾

Abstract: Since the operation of the Three Gorges dam (TGD), both bed material and suspended sediment load in the Jingjiang reach have become coarser. Certain vertical profiles of suspended sediment concentration (SSC) are characterized with a near-bed layer (with a thickness less than 10% of the water depth) of extraordinarily large concentration. Such profiles significantly deviate from the classical Rouse equation, and errors in the numerical simulations of them have not been fully understood yet. In this study, we collect the SSC data measured at the Shashi and Jianli hydrological stations before and after the dam operation, and estimate the profiles using the Rouse equation and Han equation for non-equilibrium conditions. Our analysis shows the vertical profiles have two new characteristics–coarser particles of depth-averaged diameters larger than 0.1 mm, and a longer tail or a near-bed layer of extraordinarily high concentration. We found the Rouse equation is not applicable to the SSC profiles of coarse diameters in the unsaturated sediment regime. And contribution to suspended load by this near-bed layer with the two new characteristics may be much larger than that of a common SSC profile, causing underestimation of the suspended load in the Jingjiang reach. Thus, it is essential to take measurement of the near-bed layer.

Key words: hydraulic engineering, unsaturated sediment transport, vertical distribution of suspended sediment, Jingjiang reach, heavy-tailed phenomenon

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