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隧道建设(中英文) ›› 2023, Vol. 43 ›› Issue (7): 1180-1189.DOI: 10.3973/j.issn.2096-4498.2023.07.011

• 研究与探索 • 上一篇    下一篇

富水砂性地层中地墙渗漏诱发地层塌陷灾害的细观机制探讨

晁慧, 谭勇*, 刘天任   

  1. (同济大学地下建筑与工程系, 上海 200092
  • 出版日期:2023-07-20 发布日期:2023-08-06
  • 作者简介:晁慧(1999—),男,河南漯河人,同济大学土木工程专业在读博士,研究方向为基坑工程等。 Email: 2111020@tongji.edu.cn。 *通信作者:  谭勇, Email: tanyong21th@tongji.edu.cn。

MesoMechanism of Ground Collapse Induced by Leaking of Underground Diaphragm Wall in WaterRich Sandy Strata

CHAO Hui, TAN Yong*, LIU Tianren   

  1. (Department of Geotechnical Engineering, Tongji University, Shanghai 200092, China)
  • Online:2023-07-20 Published:2023-08-06

摘要: 为探究富水砂性地层中地墙渗漏诱发地层塌陷灾害的细观机制,依托南通某深基坑地墙渗漏事故实例,采用CFD-DEM-固耦合模拟方法,对渗漏诱发的地层塌陷灾害演化规律进行细观分析,并探究不同渗漏深度的影响及灾害防治措施。研究结果表明: 1)渗漏条件下,地层受影响区域边界与水平面夹角近似为(45°+φ/2),由渗漏导致的地表沉降增量在地墙后1HL(HL为渗漏中心埋深)范围内量值较大,发展较快; 2)渗漏过程中,地层内部的空洞发展经历了生成、扩展、坍塌3阶段,空洞的坍塌伴随着地表沉降加速发展; 3)相较于无渗漏情况,地墙渗漏会引起渗漏中心附近主动水土压力突增5.7~8.5倍,其中,当渗漏发生在开挖面附近及以上时水土合力增幅较大。富水砂性地层中地墙渗漏会引发地墙结构断裂、坑外地表突沉以及踢脚破坏风险。

关键词: 基坑, 富水砂性地层, 地墙渗漏, 数值模拟, 地层塌陷

Abstract: A case study is conducted on a foundation pit in Nantong, China, to investigate the mesomechanism of ground collapse induced by the leaking of underground diaphragm wall in waterrich sandy strata. In addition, the evolution law of the ground collapse is analyzed by computational fluid dynamicsdiscrete element method and related countermeasures are discussed. The following results are obtained: (1) The included angle between the boundary line of the influenced zone and the horizontal line is approximately (45°+WT〗φ/2)WT5《TNR》〗 in the case of an underground diaphragm wall. The value and growth rate of ground collapse increment induced by the leakage are large and withinWT 1HL (HLWT5《TNR》〗=leakage depth) behind the underground diaphragm wall. (2) During the leak, the ground cavity undergoes generation, expansion, and collapse stages and rapidly collapses with ground settlement. (3) Active earth and water pressure near the leaking point increases by 5.7 to 8.5 times compared to that observed in the model with no leakage. This increase is large when leakage occurs at or above the excavation surface. Underground diaphragm wall leaking may lead to structural cracks, abrupt ground subsidence outside the pit, and the kicking damage of the retaining wall.

Key words:  , foundation pit, waterrich sandy strata, underground diaphragm wall leaking, numerical simulation, ground collapse