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Experimental study on piping in sandy gravel foundations considering effect of overlying clay

机译:考虑覆土影响的砂砾石地基管道试验研究

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The influence of the overlying clay on the progression of piping in the sandy gravel foundation of water-retaining structures is often neglected. In order to study this influence, an experimental investigation was conducted on a laboratory-scale model. It was discovered that the critical hydraulic gradient and the area of the piping tunnel increase when the overlying clay thickens.With a thicker clay layer, erosion of the sandy gravel below the clay layer occurs later, but, once the erosion starts, the erosion rate is very high and the average velocity of water seeping through the cross-section of the sandy gravel increases rapidly due to the low deformability of the thick clay layer. Furthermore, it was found that the progression of piping is a complicated and iterative process involving erosion of fine particles, clogging of pores, and flushing of the clogged pores. Two types of erosion have been identified in the progression of piping: one causes the tunnel to advance upstream, and the other increases the depth of the tunnel. The results show that the overlying clay is an important factor when evaluating piping in sandy gravel foundations of water-retaining structures.
机译:上覆粘土对保水结构的砂砾砾石基础中的管道进行的影响通常被忽略。为了研究这种影响,在实验室规模的模型上进行了实验研究。研究发现,当上覆的黏土增厚时,临界水力梯度和管道隧道的面积会增加;黏土层越厚,黏土层下面的砂砾便会发生侵蚀,但是一旦侵蚀开始,侵蚀速率由于粘土厚层的低变形性,水的平均流速非常高,通过沙砾横截面的平均渗水速度迅速增加。此外,已发现,管道的进行是复杂且反复的过程,涉及细颗粒的侵蚀,孔的堵塞和堵塞的孔的冲洗。在管道的发展过程中,已经发现了两种侵蚀类型:一种导致隧道向上游推进,另一种导致隧道深度增加。结果表明,上覆粘土是评价保水结构砂砾石基础中管道的重要因素。

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