Prediction of Pullout Resistance of Helical Soil Nails: A Limit Equilibrium Approach

被引:0
|
作者
Gopika Rajagopal [1 ]
Sudheesh Thiyyakkandi [1 ]
机构
[1] Indian Institute of Technology,Department of Civil Engineering
关键词
Coupled Eulerian–Lagrangian method; Helical soil nails; Limit-equilibrium approach; Pullout resistance; Slope stabilization;
D O I
10.1007/s40891-025-00631-0
中图分类号
学科分类号
摘要
Soil nailing is a widely used technique for stabilizing slopes and retaining walls, specifically in challenging terrains. Helical soil nails are a relatively new advancement that has gained popularity due to their ease of installation. Several experimental studies have investigated the pullout response of helical soil nails; however, no analytical method has been reported yet for predicting their pullout resistance. This research proposes a limit-equilibrium-based prediction method to estimate the bearing resistance of the helix. Numerical modelling of the installation and pullout of helical nails was carried out using a coupled Eulerian–Lagrangian finite-element approach to identify the propagation of the failure surface. Based on the results, a logarithmic spiral slip surface model was adopted to derive the bearing resistance by considering the equilibrium of external forces acting on the soil volume enclosed by the slip surface. The pullout resistance factors obtained for the helical nails were found to depend on both the soil properties and the nail’s geometric parameters. Additionally, a critical penetration depth of five times the helix diameter was observed, indicating the transition from a shallow failure to a deep failure mode. Experimental studies were also conducted to validate the numerical approach and the proposed bearing resistance equation.
引用
收藏
相关论文
共 27 条
  • [11] Pullout Resistance Increase of Soil Nailing Induced by Pressurized Grouting
    Seo, Hyung-Joon
    Jeong, Kyeong-Han
    Choi, Hangseok
    Lee, In-Mo
    JOURNAL OF GEOTECHNICAL AND GEOENVIRONMENTAL ENGINEERING, 2012, 138 (05) : 604 - 613
  • [12] Approximating Helical Pile Pullout Resistance Using Metaheuristic-Enabled Fuzzy Hybrids
    Ahmadianroohbakhsh, Mohammadmehdi
    Fahool, Farzad
    Pour, Mohammad Sadegh Saffari
    Mojtahedi, S. Farid F.
    Ghorbanirezaei, Behnam
    Nehdi, Moncef L. L.
    BUILDINGS, 2023, 13 (02)
  • [13] Comparison of interface shear strength of soil nails measured by both direct shear box tests and pullout tests
    Chu, LM
    Yin, JH
    JOURNAL OF GEOTECHNICAL AND GEOENVIRONMENTAL ENGINEERING, 2005, 131 (09) : 1097 - 1107
  • [14] Fundamental equations for limit analysis of soil mass and generalized method of limit equilibrium
    Huang Chuan-zhi
    ROCK AND SOIL MECHANICS, 2007, 28 (10) : 2127 - 2132
  • [15] Static pullout resistance of anchor chains in cohesionless soil-laboratory testing
    Kim, Byeongwan
    Kwon, Osoon
    Nam, BooHyun
    Youn, Heejung
    MARINE GEORESOURCES & GEOTECHNOLOGY, 2017, 35 (06) : 780 - 787
  • [16] Evaluation of oblique pullout resistance of reinforcements in soil wall subjected to seismic loads
    Gao, Yufeng
    Yang, Shangchuan
    Wu, Yongxin
    Li, Dayong
    Zhang, Fei
    GEOTEXTILES AND GEOMEMBRANES, 2014, 42 (05) : 515 - 524
  • [17] Effect of installation angle on pull-out resistance of nails in soil slopes
    Najafi, Navid
    Imani Kalehsar, Rouzbeh
    Khodaei, Meysam
    Dehghan, Ali Naghi
    Karroubi, Kasra
    SN APPLIED SCIENCES, 2021, 3 (08):
  • [18] Effect of installation angle on pull-out resistance of nails in soil slopes
    Navid Najafi
    Rouzbeh Imani Kalehsar
    Meysam Khodaei
    Ali Naghi Dehghan
    Kasra Karroubi
    SN Applied Sciences, 2021, 3
  • [19] The pullout resistance of plant roots in the field at different soil water conditions and root geometries
    Fan, Chia-Cheng
    Lu, Jin Zong
    Chen, Hsin Hung
    CATENA, 2021, 207
  • [20] A simple method to evaluate the pullout resistance of extruded geogrids embedded in a compacted granular soil
    Moraci, N
    Gioffrè, D
    GEOTEXTILES AND GEOMEMBRANES, 2006, 24 (02) : 116 - 128