不同降雨条件下溃坝洪水路径与泥沙冲淤数值模拟

S. Ming, Hou Lin, Z. Zhao, Zhu An, Qin Hao
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引用次数: 0

摘要

滑坡坝是由崩塌、滑坡、泥石流形成的天然坝体。溃坝引起的洪水将对大坝下游造成重大威胁。在降雨环境的作用下,大坝下游的水沙侵蚀和沉积速率将受到影响。本文以唐家山大坝为研究对象,根据野外调查和地质资料,建立下游河道数字高程模型,借助MIKE 21建立二维非定常水动力模型,探讨下游河道溃坝洪水的物质运动规律;分析了降雨对溃坝洪水中泥沙淤积速率和输沙速率分布的影响、河床厚度的变化以及洪水含沙量的影响。本文以溃坝洪水的降雨为基础,研究了不同降雨条件下溃坝洪水的泥沙侵蚀和沉积规律。结果表明,降雨的发生可显著提高溃坝洪水的持沙能力。在不同降雨强度下;洪水中泥沙的沉积速率会受到降雨的影响。有降雨条件下泥沙沉积速率大于无降雨条件下;增加降雨强度会使唐家山大坝崩塌附近的河床沉积厚度增加,如水磨沟的崩塌。基于不同降雨条件下的相关研究结论,对溃坝洪水侵蚀规律及下游救援工作具有重要的理论指导意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Simulation of Dam-Break Flood Routing and Sediment Erosion and Deposition Under Different Rainfall Conditions
Landslide dam is a natural dam body formed by collapse, landslide and debris flow. The flood caused by dam break will cause significant risk to the downstream of the dam. Under the effect of rainfall environment, the erosion and deposition rate of flood and sediment in the downstream of the dam will be affected. This paper takes Tangjiashan dam as the research object, establishes the digital elevation model of the downstream channel according to the field survey and geological data, establishes the two-dimensional unsteady hydrodynamic model with the help of MIKE 21, explores the material movement law of the dam break flood in the downstream channel, and analyzes the influence of rainfall on the distribution of sediment deposition rate and sediment transport rate in the dam break flood The variation of riverbed thickness and the influence of flood sediment concentration rate. Based on the rainfall of dam break flood, this paper studies the sediment erosion and deposition law of dam break flood under different rainfall conditions. The results show that the occurrence of rainfall can significantly increase the sediment holding capacity of dam break flood. Under different rainfall intensities; The sediment deposition rate in floods will be affected by rainfall. The sediment deposition rate under the condition of rainfall is higher than that under the condition of no rainfall; Increasing rainfall intensity will increase the sedimentation thickness of the river bed near the collapse of the Tangjiashan dam, such as the collapse of the Shuimogou ditch. Based on the relevant research conclusions under different rainfall conditions, this paper could provide significant theoretical guidance for the flood erosion law of dam breaks and downstream rescue work.
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