A simplified analysis approach for the effect of the installation of adjacent XCC pile on the existing single XCC pile in undrained clay

被引:0
作者
Peng Zhou
Hanlong Liu
Hang Zhou
Guangwei Cao
Xuanming Ding
机构
[1] Chongqing University,Key Laboratory of New Technology for the Construction of Cities in Mountain Areas, College of Civil Engineering
来源
Acta Geotechnica | 2022年 / 17卷
关键词
Coupled Eulerian–Lagrangian technique; Lateral response; Nonlinear foundation beam theory; Two-stage analysis method; XCC pile;
D O I
暂无
中图分类号
学科分类号
摘要
In this paper, a simplified two-stage analysis method is introduced to predict the lateral response of the existing X-section Cast-in-place Concrete (XCC) pile caused by adjacent XCC pile installation. Firstly, the large deformation finite element method, namely the Coupled Eulerian–Lagrangian (CEL) numerical technique, is employed to simulate the installation process of XCC pile, thus accurately capturing the lateral soil movement in free field induced by adjacent XCC pile penetration. Secondly, the free-field lateral soil displacement load is imposed on the existing XCC pile, and then the lateral behavior of the existing XCC pile is solved by employing the theory of nonlinear foundation beam. Then, the validation of the presented simplified analysis method is proved by comparison with the numerical results of the adjacent XCC pile–soil–existing XCC pile CEL model (PSP CEL model), and good consistencies are acquired. Finally, the parametric studies are performed to evaluate the impact of various parameters on the lateral behavior of the existing XCC pile. The proposed analysis method can be applied to the early phase of engineering design to alleviate the hazards related to the adjacent XCC pile–soil–existing XCC pile interaction.
引用
收藏
页码:5499 / 5519
页数:20
相关论文
共 153 条
[11]  
Marshall AM(1963)Hyperbolic stress-strain response: cohesive soils J Soil Mech Found Div 89 115-189
[12]  
Haji T(2009)Arbitrary Lagrangian Eulerian based finite element analysis of cone penetration in soft clay Comput Geotech 36 851-377
[13]  
Abdelatif AO(2012)Field tests on bearing characteristics of X-section pile composite foundation J Perform Constr Facil 26 180-546
[14]  
Carbonari S(2014)Three-dimensional numerical analysis of the stress transfer mechanism of XCC piled raft foundation Comput Geotech 55 365-282
[15]  
Morici M(2014)A modified analytical solution of soil stress distribution for XCC pile foundations Acta Geotech 9 529-501
[16]  
Fan Y(2014)XCC pile installation effect in soft soil ground: A simplified analytical model Comput Geotech 62 268-51
[17]  
Wang J(2020)Numerical simulation of set-up around shaft of XCC pile in clay Geomech Eng 21 489-867
[18]  
Fan YF(2020)Numerical investigations of the installation process of giant deep-buried circular open caissons in undrained clay Comput Geotech 118 18-99
[19]  
Wang JH(2015)An analytical study of tunnel-pile interaction Tunn Undergr Space Technol 45 43-106
[20]  
Fan YF(1994)Effect of pile driving on adjacent piles in clay Can Geotech J 31 856-39