CASE STUDY ON PERFORMANCE MONITORING AND STABILITY ANALYSIS OF BAISHIHU SUSPENSION BRIDGE AND SIDE SLOPE

Author:

Chen Chihcheng1,Shih Ban-Jwu1,Jeng Ching-Jiang2

Affiliation:

1. Department of Civil and Disaster Prevention Engineering, National Taipei University of Technology, Taipei, Taiwan

2. Department of Landscape and Environmental Design, Huafan University, New Taipei City, Taiwan

Abstract

The main structure of the Baishihu suspension bridge was connected to the anchor foundations by three main steel cables. The wooden pedestrian deck was fixed to the main steel cables using steel beams and was stabilized by two stabilizing cables. The stabilizing cables and bridge body were joined by 44 steel connecting rods. Therefore, the slope stability at the anchorage foundations of the main steel cables, as well as the performance monitoring and analysis of the main steel cables and stabilizing cables, are critical to the overall performance of the suspension bridge. This paper discusses the performance monitoring and analysis of the steel cable deflection and cable strength for this bridge, as well as the main considerations and results of the stability analysis of the bridge abutments and side slopes of the two banks. Water-level observation wells, inclinometers, and tiltmeters monitoring were used to record reference data for the analysis of the slope stability performance. Additionally, the three-dimensional dynamic analysis program VFIFE was used to analyze the deformation and motion of the bridge. The final steady-state results were used to compare the static design value and monitoring data. The dynamic response before the final steady state was also observed.

Publisher

Vilnius Gediminas Technical University

Subject

Strategy and Management,Civil and Structural Engineering

Reference13 articles.

1. All-wisdom Engineering Consultants, Ltd. (2020). Final report of Baishihu Suspension Bridge structure safety assessment and maintenance de-sign service in 2019. Geotechnical Engineering Office, Public Works Department, Taipei City Government.

2. Dynamic investigation of a suspension footbridge

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4. Chen, S. K. (2011). Analysis of the nonlinear behavior of bridge by the vector form intrinsic finite element method [PhD thesis]. Department of Civil Engineering, National Central University, Chung-li, Taiwan.

5. Entire-Process Simulation of Earthquake-Induced Collapse of a Mockup Cable-Stayed Bridge by Vector Form Intrinsic Finite Element (VFIFE) Method

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