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Numerical simulations of overflow experiments on a model dike

机译:模型堤坝溢流试验的数值模拟

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Dike failure due to overtopping is one of the important factors, which should be considered in the dike designing process. Although the overflow is characterized by the relatively low risk of occurrence, in many cases dikes are totally destroyed or seriously damaged. An interesting phenomenon occurring during overflow is the trapping of air in pores of the unsaturated soil material. As the infiltration progresses from all sides, the air pressure in the unsaturated region increases, which may ultimately lead to damage of the dike structure. It happens when the air is expulsed in form of bursts and forms large macropores. Such a behaviour evidenced in laboratory experiments. In this study we attempt to simulate the evolution of stress field in the model dike subjected to overtopping. The results are in qualitative agreement with observations, showing that formation of the first macropores occurs in the direction perpendicular to the minor principal stress in the soil mass along the dike slope edge.
机译:由于过高而导致的堤防故障是重要因素之一,在堤防设计过程中应予以考虑。尽管溢流的特征是发生风险相对较低,但在许多情况下,堤防被完全破坏或严重损坏。溢流过程中发生的一个有趣现象是空气滞留在非饱和土壤材料的孔隙中。随着渗透从各个方向进行,不饱和区域中的气压增加,这最终可能导致堤坝结构的损坏。当空气以爆发形式排出并形成大的大孔时就会发生。在实验室实验中证明了这种行为。在这项研究中,我们试图模拟承受过顶的模型堤坝中应力场的演变。结果与观察结果在质量上吻合,表明第一个大孔的形成沿垂直于堤坝边坡土体中次要主应力的方向发生。

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