Horizontal Seismic Response of Self-Anchored Cable-Stayed Suspension Bridge under Pile-Soil-Structure Interaction

Author:

Feng Miao1,Ping Guan1,Bo Wang1

Affiliation:

1. Dalian University

Abstract

Based on scheme of Dalian gulf cross-sea bridge, in this paper, a 3-dimensional FE model for Self-anchored cable-stayed suspension bridge is established with finite element program and pile-soil-structure interaction is simulated by use of the equivalent embed fixation model. Based on the FE model, model analysis is carried out and the effects of pile-soil-structure interaction on dynamic behavior of long-span self-anchored cable-stayed suspension bridge are specially studied. The seismic response analysis result considering that pile-soil-structure interaction was compared with that of without considering such interaction. The analysis result show that interaction reduced horizontal displacement in middle span of stiffening beam and top of tower, horizontal moment not only at bottom of tower, but also assistant piers. The research results provide some theoretical foundation to composite structure system.

Publisher

Trans Tech Publications, Ltd.

Reference8 articles.

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2. Cai Y X, Gould P L, Desai C S. Nonlinear analysis of 3D seismic interaction of soil-pile-structure systems and application [J]. Engineering Structure , 2000, 22(2): 191-199.

3. Ahn, Gould K L. Soil-Pile-Structure Interaction Effects on the Seismic Response of Cooling Tower [J]. Earthquake Engineering and Structure Dynamic, 1989, 18: 593-609.

4. Xu Jing, Li Hongnan, Li Gang, Huang Lianzhuang. Seismic response analysis of transmission tower in consideration of the pile-soil dynamic interaction [J]. Engineering Mechanics, 2009, 26(9): 24-29. (in Chinese).

5. Song Bo, Liu Quan, Li Fanfan, Zhou Hongyu. Influence of soil-pile interaction on the seismic response analysis of a large-span steel arch bridge [J]. Journal of University of Science and Technology Beijing, 2009, 31(9): 1077-1085. (in Chinese).

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