Rock and Soil Mechanics ›› 2023, Vol. 44 ›› Issue (12): 3629-3638.doi: 10.16285/j.rsm.2022.1968

• Numerical Analysis • Previous Articles     Next Articles

Difference analysis of seismic responses of inclined liquefaction site-pile-structure system under near-field pulsed and non-pulsed ground motions

ZHANG Zheng-zhe, JIA Ke-min, XU Cheng-shun, PAN Ru-jiang   

  1. Key Laboratory of Urban Security and Disaster Engineering of the Ministry of Education, Beijing University of Technology, Beijing 100124, China
  • Received:2022-12-17 Accepted:2023-03-02 Online:2023-12-20 Published:2023-12-21
  • Supported by:
    This work was support by the National Natural Science Foundation of China for Distinguished Young Scholars(No.52225807)。

Abstract: In this paper, the seismic responses of inclined liquefaction site-pile-structure system under near-field pulsed and non-pulsed ground motion were studied. Firstly, a finite element model of inclined liquefaction site-pile-structure system was established based on the finite element platform OpenSees, and the reliability of the numerical model was verified by comparing with the results of large-scale shaking table test. On this basis, the finite element model of typical inclined liquefaction site-pile-structure system was established, the seismic response laws of the system under near-field pulsed and non-pulsed ground motion were compared and analyzed, and the correlation analysis between ground motion intensity index and seismic response was carried out. The results show that compared with the non-pulsed ground motion, the residual displacement of the site increases obviously under the near-field pulsed ground motion, especially at the top of the loose sand layer, which increases by about 40%. Pile bending moment and pile residual displacement increase significantly, especially at the pile top. The correlation between the ground motion intensity index and the response under non-pulsed ground motion is higher than that under pulsed ground motion. Three strength parameters with good correlation, i.e. PGV/PGA (peak ground velocity/ peak ground acceleration), AI (Arias intensity) and Tm(mean period), can indicate the influence of ground motion on the failure response of liquefaction site-pile-structure system to a certain extent.

Key words: pulse ground motion, inclined liquefaction site, pile foundation, numerical simulation, seismic response, ground motion parameters, correlation analysis

CLC Number: 

  • TU473
[1] ZHAO Ying-xiao, HE Wei-peng, DING Xiao-ying, ZHAN Jun, HU Xia-song, LIU Chang-yi, MIAO Xiao-xing, WANG Yan-xiu, LU Hai-jing, XING Guang-yan, LI Hua-tan, ZHANG Pei-hao. Relationship between resistivity and soil physical and mechanical properties of herbaceous slopes in the loess area of Xining Basin [J]. Rock and Soil Mechanics, 2024, 45(2): 477-488.
[2] WEN Lei, LIU Zhong, MA Xiao-hua, ZHANG Zhen, . Compressive bearing capacity and load transfer mechanism of stiffened deep cement mixing pile installed in silt [J]. Rock and Soil Mechanics, 2024, 45(2): 511-524.
[3] LIU Xin-rong, WANG Hao, GUO Xue-yan, LUO Xin-yang, ZHOU Xiao-han, XU Bin, . Stability of typical perilous rock bank slope considering the influence of deterioration of rock mass in fluctuation belt [J]. Rock and Soil Mechanics, 2024, 45(2): 563-576.
[4] ZHU Yin-bin, LI Chang-dong, ZHOU Jia-qing, XIANG Lin-yu, JIANG Xi-hui, ZHU Wen-yu, . Influence of permeable matrix on non-Darcian flow in single rough-walled fracture [J]. Rock and Soil Mechanics, 2024, 45(2): 601-611.
[5] HUA Tao, SHEN Lin-fang, WANG Zhi-liang, LI Ze, XU Ze-min. Numerical simulation of rock hydraulic fracturing based on peridynamics and quantitative analysis of fracture network [J]. Rock and Soil Mechanics, 2024, 45(2): 612-622.
[6] HUANG Sheng-gen, ZHANG Yi, HUO Hao, CHENG Chang-qing. Study on deformation law of lattice columns in deep foundation pits in soft soil area [J]. Rock and Soil Mechanics, 2023, 44(增刊): 533-538.
[7] WANG Kai, FU Qiang, XU Chao, AI Zi-bo, LI Dan, WANG Lei, SHU Long-yong, . Numerical simulation of interface mechanical effects of primary coal-rock combination [J]. Rock and Soil Mechanics, 2023, 44(增刊): 623-633.
[8] QIAO Ya-fei, , YAN Kai, , ZHAO Teng-teng, DING Wen-qi, . Characteristics and mechanism of soil heave at the bottom of ultra-deep circular shafts in soft soil areas [J]. Rock and Soil Mechanics, 2023, 44(9): 2707-2716.
[9] ZHANG Kun-yong, ZHANG Meng, SUN Bin, LI Fu-dong, JIAN Yong-zhou, . A calculation method for deformation of diaphragm wall of narrow deep foundation pit in soft soil considering spatio-temporal effect [J]. Rock and Soil Mechanics, 2023, 44(8): 2389-2399.
[10] WANG Yong-guang, LIANG Jian-wen, BA Zhen-ning, . A dynamic nonlinear constitutive model for soil based on modified damping and its implementation in Abaqus [J]. Rock and Soil Mechanics, 2023, 44(8): 2287-2296.
[11] YIN Xin-sheng, SHU Ying, LIANG Lu-ju, ZHANG Shi-min, . Stability analysis of shield excavation surface in saturated silt strata considering seepage [J]. Rock and Soil Mechanics, 2023, 44(7): 2005-2016.
[12] SHEN Hui, LIU Ya-qun, LIU Bo, LI Hai-bo, . Numerical study on the amplification effect of rock slopes under oblique incidence of seismic waves [J]. Rock and Soil Mechanics, 2023, 44(7): 2129-2142.
[13] JIA Ke-min, XU Cheng-shun, DU Xiu-li, ZHANG Xiao-ling, SONG Ji, SU Zhuo-lin, . Mechanism of liquefaction-induced lateral spreading in liquefiable inclined sites [J]. Rock and Soil Mechanics, 2023, 44(6): 1837-1848.
[14] JI Yu-kun, WANG Qin-ke, ZHAO Guo-liang, ZHANG Jian, MA Jian-lin, . Model test and numerical simulation of vertical bearing capacity and deformation characteristics of rock-socketed uplift pile in sloped ground [J]. Rock and Soil Mechanics, 2023, 44(6): 1604-1614.
[15] SUN Yan-xiao, LIU Song-yu, TONG Li-yuan, WANG Jun, CUI Jia, LI Shi-long, LI Min, . Optimization of confined aquifer dewatering for cut and cover tunnel in Yangtze River floodplain [J]. Rock and Soil Mechanics, 2023, 44(6): 1800-1810.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] YAO Yang-ping, HOU Wei. Basic mechanical behavior of soils and their elastoplastic modeling[J]. , 2009, 30(10): 2881 -2902 .
[2] XIANG Tian-bing, FENG Xia-ting, CHEN Bing-rui, JIANG Quan, ZHANG Chuan-qing. Rock failure mechanism and true triaxial experimental study of specimens with single structural plane under three-dimensional stress[J]. , 2009, 30(10): 2908 -2916 .
[3] XU Su-chao, FENG Xia-ting, CHEN Bing-rui. Experimental study of skarn under uniaxial cyclic loading and unloading test and acoustic emission characteristics[J]. , 2009, 30(10): 2929 -2934 .
[4] WANG Shu-yun, LU Xiao-bing, ZHAO Jing, WANG Ai-lan. Post-cyclic loading undrained strength degradation characteristics of silty clay[J]. , 2009, 30(10): 2991 -2995 .
[5] HU Wei, HUANG Yi, LIU Zeng-rong. Testing and theoretical study of undrained shearing strength of saturated loess under cyclic loading[J]. , 2009, 30(10): 2996 -3000 .
[6] LIU Zhen-ping, HE Huai-jian, LI Qiang, ZHU Fa-hua. Study of the technology of 3D modeling and visualization system based on Python[J]. , 2009, 30(10): 3037 -3042 .
[7] WEN Sen, ZHAO Yan-xi, YANG Sheng-qi. Prediction on penetration rate of TBM based on Monte Carlo-BP neural network[J]. , 2009, 30(10): 3127 -3132 .
[8] ZHONG Jia-yu, ZHENG Yong-lai, NI Yin. Experimental study of response pattern of pore water pressure on sandy seabed under wave action[J]. , 2009, 30(10): 3188 -3193 .
[9] SUN De-an. Hydro-mechanical behaviours of unsaturated soils and their elastoplastic modelling[J]. , 2009, 30(11): 3217 -3231 .
[10] ZHAO Cheng-gang,CAI Guo-qing. Principle of generalized effective stress for unsaturated soils[J]. , 2009, 30(11): 3232 -3236 .