Earth pressure distribution behind rigid non-yielding walls under the effect of repeated loading on backfill

被引:0
|
作者
Mohsen Kargar
S. Majdeddin Mir Mohammad Hosseini
机构
[1] Amirkabir University of Technology,
来源
关键词
Earth pressure distribution; Non-yielding walls; Cyclic surcharge; Repeated loading; Numerical model; Physical model;
D O I
暂无
中图分类号
学科分类号
摘要
One of the most important factors in optimized design of non-yielding retaining walls like basement walls and bridge abutments is to determine the exact variation of earth pressure acting on such walls. In this paper, the distribution of at rest earth pressure behind a laboratory model of a fixed and rigid retaining wall with a cohesionless dry backfill is measured under the effect of static and repeated loads. The same conditions of the experimental model are then simulated numerically with a two-dimensional finite-difference analysis computer code. For the purpose of model verification, the results of numerical model are compared to the results of the experimental model, which is similar in geometrical and geomechanical properties. Cyclic surcharges with different amplitudes and frequencies are applied in different distances from the wall, and the earth pressure distribution, the resultant force, and its point of application are investigated. The effect of soil and loading parameters on the at rest earth pressure is also evaluated, and a parametric study has been carried out. The results of model show a significant increase in the earth pressure due to cyclic loading compared to static loading, especially in the initial cycles of loading. It indicates that the effect of cycling nature of loading should be essentially taken into account in the design of retaining walls.
引用
收藏
页码:839 / 847
页数:8
相关论文
共 50 条
  • [41] Experimental investigations of lateral earth pressures behind rigid retaining walls under different displacement modes
    Rui, Rui
    Xia, Rong-ji
    Han, Jie
    Ye, Yu-qiu
    Miao, Xin
    Elabd, Mohamed
    ACTA GEOTECHNICA, 2024, 19 (05) : 2545 - 2562
  • [42] Theoretical analysis of earth pressure against rigid retaining walls under translation mode
    Khosravi, Mohammad Hossein
    Pipatpongsa, Thirapong
    Takemura, Jiro
    SOILS AND FOUNDATIONS, 2016, 56 (04) : 664 - 675
  • [43] Experimental analysis of earth pressure against rigid retaining walls under translation mode
    Khosravi, M. H.
    Pipatpongsa, T.
    Takemura, J.
    GEOTECHNIQUE, 2013, 63 (12): : 1020 - 1028
  • [44] Research on earth pressure behind row piles from clayey backfill considering soil arching effect
    Yin Zhi-qiang
    She Cheng-xue
    Yao Hai-lin
    Lu Zheng
    Luo Xing-wen
    ROCK AND SOIL MECHANICS, 2018, 39 : 131 - 139
  • [45] Simplified Method for Calculating Active Earth Pressure on Rigid Retaining Walls Considering the Arching Effect under Translational Mode
    Li, Jing Pei
    Wang, Mei
    INTERNATIONAL JOURNAL OF GEOMECHANICS, 2014, 14 (02) : 282 - 290
  • [46] Study of Stress Distribution Characteristics of Reinforced Earth Retaining Walls under Cyclic Loading
    Wang, He
    Ma, Jian
    Yang, Guangqing
    Wang, Nan
    APPLIED SCIENCES-BASEL, 2022, 12 (20):
  • [47] Assessment of Analytical Solutions for Calculating Lateral Earth Pressures Behind Rigid Retaining Walls Under Translational Movement
    Ye, Yu-qiu
    Han, Jie
    Rui, Rui
    GEOTECHNICAL AND GEOLOGICAL ENGINEERING, 2024, 42 (04) : 2901 - 2919
  • [48] Assessment of Analytical Solutions for Calculating Lateral Earth Pressures Behind Rigid Retaining Walls Under Translational Movement
    Yu-qiu Ye
    Jie Han
    Rui Rui
    Geotechnical and Geological Engineering, 2024, 42 : 2901 - 2919
  • [49] Active Earth Pressure on Retaining Wall for c-φ Soil Backfill under Seismic Loading Condition
    Shukla, Sanjay Kumar
    Gupta, Shrawan Kumar
    Sivakugan, Nagaratnam
    JOURNAL OF GEOTECHNICAL AND GEOENVIRONMENTAL ENGINEERING, 2009, 135 (05) : 690 - 696
  • [50] The Effect of Displacement Mode of Rigid Retaining Walls on Shearing Bands by Active Earth Pressure
    Sekkel, Abdelkrim
    Meghachou, Mourad
    ENGINEERING TECHNOLOGY & APPLIED SCIENCE RESEARCH, 2013, 3 (05) : 526 - 531