Seismic dynamic damage characteristics of vertical and batter pile-supported wharf structure systems

被引:1
|
作者
Jiren, Li [1 ,2 ]
Bo, Song [1 ,2 ]
Jianyu, Cui [3 ]
机构
[1] School of Civil and Environmental Engineering, University of Science and Technology Beijing, Beijing,100083, China
[2] Beijing International Cooperation Base for Science and Technology, Aseismic Research of the Rail Transit Engineering in the Strong Motion Area, Beijing,100083, China
[3] Engineering Department, Anderson Technology Corporation, Tokyo,1050003, Japan
关键词
Seismic design - Steel pipe - Seismology - Hydraulic structures - Finite element method - Seismic waves - Axial flow;
D O I
10.25103/jestr.085.23
中图分类号
学科分类号
摘要
Considering a typical steel pipe pile-supported wharf as the research object, finite element analytical models of batter and vertical pile structures were established under the same construction site, service, and geological conditions to investigate the seismic dynamic damage characteristics of vertical and batter pile-supported wharf structures. By the numerical simulation and the nonlinear time history response analysis of structure system and the moment-axial force relation curve, we analyzed the dynamic damage characteristics of the two different structures of batter and vertical piles under different seismic ground motions to provide reasonable basis and reference for designing and selecting a pile-supported wharf structure. Results showed that the axial force of batter piles was dominant in the batter pile structure and that batter piles could effectively bear and share seismic load. Under the seismic ground motion with peak ground acceleration (PGA) of 350 Gal and in consideration of the factors of the design requirement of horizontal displacement, the seismic performance of the batter pile structure was better than that of the vertical pile structure. Under the seismic ground motion with a PGA of 1000 Gal, plastic failure occurred in two different structures. The contrastive analysis of the development of plastic damage and the absorption and dissipation for seismic energy indicated that the seismic performance of the vertical pile structure was better than that of the batter pile structure. © 2015 Kavala Institute of Technology.
引用
收藏
页码:180 / 189
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