人民长江 ›› 2025, Vol. 56 ›› Issue (4): 169-175.doi: 10.16232/j.cnki.1001-4179.2025.04.023

• • 上一篇    

悬挂式防渗墙地基渗透破坏特征研究

金伟,张子豪,陈秋怡,王刚   

  • 收稿日期:2024-04-25 出版日期:2025-04-28 发布日期:2025-04-28

Seepage failure characteristics of foundations with suspended cut-off walls

JIN Wei,ZHANG Zihao,CHEN Qiuyi,WANG Gang   

  • Received:2024-04-25 Online:2025-04-28 Published:2025-04-28

摘要: 为研究深厚覆盖层上悬挂式防渗墙地基的渗透破坏特征,分别选用均匀砂土和内部不稳定的砂砾石制作地基,开展渗透破坏模型试验。基于试验结果分析两种地基的渗透破坏模式,得出悬挂式防渗墙地基的渗透破坏模式与地基土体的内部稳定性有关。在此基础上,依托模型试验建立三维有限元模型,与试验结果进行对比分析,验证了数值模型具有较好的可靠性。利用经验证的数值模型进一步研究防渗墙深度、厚度和缺陷对地基抗渗性能的影响。结果表明:均匀砂土地基和不稳定砂砾石地基的渗透破坏模式分别为后退型管涌破坏和潜蚀型破坏;地基抗渗性能基本与墙体厚度无关,主要受墙深和墙体缺陷的影响;悬挂式防渗墙存在最优深度,防渗墙最优深度与地基深度的比值约为 0.7

关键词: 悬挂式防渗墙;渗透破坏;渗流场;模型试验;数值模拟

Abstract: Suspended cut-off wall is a common method for seepage control in deep alluvium foundations. To investigate seepage failure characteristics of foundations with suspended cut-off walls, a model test of seepage failure was carried out by using uniform sand and an unstable sandy gravel to make the foundation. The seepage failure patterns of the two foundations were analyzed based on the test results. It was revealed that the seepage failure pattern of foundation was related to the internal stability of the soil. Then a three - dimensional finite element model was established based on the model test, and the reliability of the numerical model was verified by comparing with the test results. Finally, the effects of the depth, thickness and defects of the wall on the impermeability of the foundation were analyzed by the numerical model. The results show that the seepage failure patterns of uniform sandy foundation and unstable sandy gravel foundation were backward piping failure and internal erosion failure respectively. The impermeability of the foundation mainly depended on the wall depth and defects in the wall and is irrespective of the wall's thickness. By analyzing the change law of seepage field with the increase of wall depth, it was concluded that the wall had an optimal depth that was about 0.7 times of the total foundation depth.

Key words: suspended cut-off wall; seepage failure; seepage field; model test; numerical simulation