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Numerical simulation on the seismic absorption effect of the cushion in rigid-pile composite foundation
by
Han Xiaolei Li Yaokun Ji Jing Ying Junhao Li Weichen Dai Baicheng
in
ABAQUS
/ Absorption
/ Acceleration
/ Civil Engineering
/ Computer simulation
/ Control
/ Cushions
/ Dynamical Systems
/ Earth and Environmental Science
/ Earth Sciences
/ Earthquakes
/ Finite element method
/ Foundations
/ Geotechnical Engineering & Applied Earth Sciences
/ Mathematical models
/ Seismic activity
/ Seismic engineering
/ Seismic waves
/ Simulation
/ Studies
/ Vibration
/ 减震效果
/ 刚性桩复合地基
/ 动力时程分析
/ 吸收效应
/ 地震作用
/ 垫层厚度
/ 数值模拟
2016
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Numerical simulation on the seismic absorption effect of the cushion in rigid-pile composite foundation
by
Han Xiaolei Li Yaokun Ji Jing Ying Junhao Li Weichen Dai Baicheng
in
ABAQUS
/ Absorption
/ Acceleration
/ Civil Engineering
/ Computer simulation
/ Control
/ Cushions
/ Dynamical Systems
/ Earth and Environmental Science
/ Earth Sciences
/ Earthquakes
/ Finite element method
/ Foundations
/ Geotechnical Engineering & Applied Earth Sciences
/ Mathematical models
/ Seismic activity
/ Seismic engineering
/ Seismic waves
/ Simulation
/ Studies
/ Vibration
/ 减震效果
/ 刚性桩复合地基
/ 动力时程分析
/ 吸收效应
/ 地震作用
/ 垫层厚度
/ 数值模拟
2016
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Do you wish to request the book?
Numerical simulation on the seismic absorption effect of the cushion in rigid-pile composite foundation
by
Han Xiaolei Li Yaokun Ji Jing Ying Junhao Li Weichen Dai Baicheng
in
ABAQUS
/ Absorption
/ Acceleration
/ Civil Engineering
/ Computer simulation
/ Control
/ Cushions
/ Dynamical Systems
/ Earth and Environmental Science
/ Earth Sciences
/ Earthquakes
/ Finite element method
/ Foundations
/ Geotechnical Engineering & Applied Earth Sciences
/ Mathematical models
/ Seismic activity
/ Seismic engineering
/ Seismic waves
/ Simulation
/ Studies
/ Vibration
/ 减震效果
/ 刚性桩复合地基
/ 动力时程分析
/ 吸收效应
/ 地震作用
/ 垫层厚度
/ 数值模拟
2016
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Numerical simulation on the seismic absorption effect of the cushion in rigid-pile composite foundation
Journal Article
Numerical simulation on the seismic absorption effect of the cushion in rigid-pile composite foundation
2016
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Overview
In order to quantitatively study the seismic absorption effect of the cushion on a superstructure, a numerical simulation and parametric study are carried out on the overall FEA model of a rigid-pile composite foundation in ABAQUS. A simulation of a shaking table test on a rigid mass block is first completed with ABAQUS and EERA, and the effectiveness of the Drucker-Prager constitutive model and the finite-infinite element coupling method is proved. Dynamic time-history analysis of the overall model under frequent and rare earthquakes is carried out using seismic waves from the El Centro, Kobe, and Bonds earthquakes. The different responses of rigid-pile composite foundations and pile-raft foundations are discussed. Furthermore, the influence of thickness and modulus of cushion, and ground acceleration on the seismic absorption effect of the cushion are analyzed. The results show that: 1) the seismic absorption effect of a cushion is good under rare earthquakes, with an absorption ratio of about 0.85; and 2) the seismic absorption effect is strongly affected by cushion thickness and ground acceleration.
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