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雷华阳, 刘旭, 加瑞, 施福硕, 许英刚. 考虑土拱渐进发展的松动土压力研究[J]. 岩土工程学报, 2021, 43(8): 1434-1442. DOI: 10.11779/CJGE202108008
引用本文: 雷华阳, 刘旭, 加瑞, 施福硕, 许英刚. 考虑土拱渐进发展的松动土压力研究[J]. 岩土工程学报, 2021, 43(8): 1434-1442. DOI: 10.11779/CJGE202108008
LEI Hua-yang, LIU Xu, JIA Rui, SHI Fu-shuo, XU Ying-gang. Loosening earth pressure considering progressive development of soil arching[J]. Chinese Journal of Geotechnical Engineering, 2021, 43(8): 1434-1442. DOI: 10.11779/CJGE202108008
Citation: LEI Hua-yang, LIU Xu, JIA Rui, SHI Fu-shuo, XU Ying-gang. Loosening earth pressure considering progressive development of soil arching[J]. Chinese Journal of Geotechnical Engineering, 2021, 43(8): 1434-1442. DOI: 10.11779/CJGE202108008

考虑土拱渐进发展的松动土压力研究

Loosening earth pressure considering progressive development of soil arching

  • 摘要: 结构上方土压力的确定是顶管工程设计和施工中的重要环节,施工中地层损失所引起的上方土体相对滑动使得竖向土压力减小,即形成土拱效应。在Terzaghi松动土压力模型的基础之上,通过水平微分土条的主应力轴偏转角的分析构建了平衡方程,考虑了施工深度以及地层损失对滑移破坏面形态的影响,并利用土拱形成的初始状态和稳定状态的边界条件分别进行了求解计算,分析了土拱效应的渐进发展趋势。经过对比分析,验证了计算模型的合理性,结合顶管施工的实际情况,探究了土体剪胀角和摩擦角对土拱效应的影响,为顶管施工中的土压力计算提供参考依据。

     

    Abstract: The calculation of the earth pressure on the structure is important for the design and construction of pipe jacking. Due to the ground loss, the arching effect caused by the relative slip between interfaces can relieve the vertical earth pressure. Based on the Terzaghi model, the equilibrium differential equation is established through the principal stress rotation analysis, and the influences of depth and ground loss on the shape of failure plane are studied. The equation is solved under the boundary condition of the initial state and the steady state. Compared with the previous studies, the proposed method is reasonable. According to the actual situation in pipe jacking construction, the effects of the dilatancy angle and friction angle on the arching effect are explored. The results show that the dilatancy angle of the soil has an important influence on the initial shape of the failure surface, and the friction angle affects the stress state and shear strength of the soil, which may provide a reference for the calculation of loosening earth pressure in pipe jacking construction.

     

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