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首页> 外文期刊>International journal of applied mechanics >CFD-DEM Simulations of Seepage-Induced Erosion
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CFD-DEM Simulations of Seepage-Induced Erosion

机译:CFD-DEM模拟渗流引起的侵蚀

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Increases in seepage force reduce the effective stress of particles and result in the erosion of particles, producing heave failure and piping. Sheet piles/cutoff walls are often employed in dams to control the seepage. In this study, a computational fluid dynamics solver involving two fluid phases was developed and coupled with discrete element method software to simulate the piping process around a sheet pile/cutoff wall. Binary-sized particles were selected to study the impact of fine particles on the mechanisms of seepage. The seepage phenomenon mainly appeared among fine particles located in the downstream side, with the peak magnitudes of drag force and displacement occurring around the retaining wall. Based on the particle-scale observations, the impact of seepage produced a looser condition for the region concentrated around the retaining wall and resulted in an anisotropic condition in the soil skeleton. The results indicate that heave behavior occurs when the drag force located adjacent to the boundary on the downstream side is larger than the corresponding weight of the bulk soil.
机译:渗流力的增加减少了颗粒的有效应力并导致颗粒的腐蚀,产生升降衰竭和管道。床单/截止墙通常在水坝中使用来控制渗漏。在该研究中,开发了涉及两个流体阶段的计算流体动力学求解器,并与分立元件方法软件耦合,以模拟纸桩/截止墙周围的管道过程。选择二元尺寸的颗粒以研究细颗粒对渗流机制的影响。渗流现象主要出现在位于下游侧的细颗粒之间,其峰值幅度和围绕挡土墙发生的位移。基于粒度观测,渗流的影响产生了浓缩在挡土墙周围的区域的松动条件,并导致土壤骨架中的各向异性条件。结果表明,当与下游侧的边界相邻的拖曳力大于散装土壤的相应重量时,发生升降行为。

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