Parameter Study on Double-row Pile in the Combined High Retaining Structure

被引:0
作者
Gang Wang
Changrui Dong
Zheng Fang
Si Chang
Jenisha Singh
机构
[1] Central South University,Department of Civil Engineering
[2] China Railway Design Corporation,undefined
来源
Geotechnical and Geological Engineering | 2022年 / 40卷
关键词
Double-row pile; Combined retaining high structure; Bending moment; Horizontal displacement;
D O I
暂无
中图分类号
学科分类号
摘要
The combined high retaining structure with little urban space, especially under the deep under-consolidated earth filling condition, was studied based on the project in Liangmao mountain depot of Shenzhen Metro Line 10. The superiority of the combined retaining structure including double-row piles over the pile-slab wall, single-row piles, and gravity retaining wall schemes was confirmed based on the numerical analysis by MIDAS/GTS. Based on the this, the force and deformation characteristics, including the influence of pile diameter, row spacing, and pile length on the displacement and internal force of the retaining structure, were analyzed. The simulation results show that the change of the pile diameter has a great influence on the displacement and the bending moment of the pile. As the row spacing increases, the absolute value of the maximum negative bending moment in the upper part of the front row of piles and the positive bending moment in the lower part tends to decrease. The pile length has some influence on the horizontal displacement of the pile but only a limited influence on the internal force of the pile.
引用
收藏
页码:5233 / 5248
页数:15
相关论文
共 82 条
[11]  
Zeyeni K(2018)Numerical modelling of railway embankments for high-speed train constructed on soft soil J GeoEng 13 149-159
[12]  
Boukadi N(2013)Finite element analysis of a deep excavation: A case study from the Bangkok MRT Soils Found 53 756-773
[13]  
Ghareh S(2013)Geotechnical parameters from pressuremeter tests for MRT blue line extension in Bangkok Geomech Eng 5 99-118
[14]  
Guo WD(2014)Simplified finite-element modelling for tunnelling-induced settlements Geotech Res 1 133-152
[15]  
Hsiung BCB(2018)Strength and stiffness parameters of Bangkok clays for finite element analysis Geotech Eng 49 150-156
[16]  
Likitlersuang S(2019)Structural modelling in finite element analysis of deep excavation J Geoengin 14 121-128
[17]  
Phan KH(2012)Landslide stabilizing piles: experimental evidences and numerical interpretation Eng Geol 149 70-77
[18]  
Pisitsopon P(2021)Influence of the spatial variability of soil shear strength on deep excavation: a case study of a Bangkok underground MRT Station Int J Geomech 21 04020248-3038
[19]  
Hu X(2010)Optimization design of connection methods of double-row anti-slide piles tip J Rock Mech Geotech Eng 29 3034-697
[20]  
Zhou C(2012)Stiffness and strength parameters for hardening soil model of soft and stiff Bangkok clays Soils Found 52 682-22