Guo Jixiang, Zhang Yanjun, Li Yunfeng, Zhang Xin, Zheng Jianqiao, Shi Haoxin, Zhang Qing, Chen Zongfang, Ma Yongjie
College of Construction Engineering, Jilin University, Changchun, 130026, China.
Key Lab of Groundwater Resource and Environment, Ministry of Education, Jilin University, Changchun, 130026, China.
Sci Rep. 2024 Jul 31;14(1):17717. doi: 10.1038/s41598-024-68824-7.
The evolution and mechanism of ground collapse caused by underground water pipeline leakage have become increasingly significant as more urban areas experience collapses. Based on the principle of similarity, and considering the engineering context of road collapses in Anqing City, Anhui Province, this study designed a 3 m × 2 m × 2 m rupture-collapse model test device. Digital Image Correlation (DIC) technology was employed to investigate the erosion process and collapse mechanisms caused by underground pipeline leakage. The results indicate that groundwater seepage provides the driving force for collapses, combined with the migration space provided by defects, collectively triggering the collapses. When groundwater seepage is minimal, the cohesive forces between soil particles maintain soil stability. As groundwater seepage increases, the soil particle framework is eroded, leading to soil structure destabilization and collapse initiation. The depth of collapse significantly influences stress evolution: stress evolution intensity beneath and above the collapse pit is positively correlated with the distance from the collapse pit bottom, but negatively correlated with the distance from the defect. The research provides insights for the early warning and management of ground collapse.
随着越来越多的城市地区出现地面塌陷,地下水管道泄漏导致地面塌陷的演变过程和机制变得愈发重要。基于相似原理,并结合安徽省安庆市道路塌陷的工程背景,本研究设计了一种3米×2米×2米的破裂-塌陷模型试验装置。采用数字图像相关(DIC)技术研究地下管道泄漏引起的侵蚀过程和塌陷机制。结果表明,地下水渗流为塌陷提供驱动力,结合缺陷提供的迁移空间,共同引发塌陷。当地下水渗流很小时,土壤颗粒之间的内聚力维持土壤稳定性。随着地下水渗流增加,土壤颗粒骨架被侵蚀,导致土壤结构失稳并引发塌陷。塌陷深度对应力演化有显著影响:塌陷坑下方和上方的应力演化强度与距塌陷坑底部的距离呈正相关,但与距缺陷的距离呈负相关。该研究为地面塌陷的早期预警和治理提供了见解。