Research on Optimal Arch Rib Inclination of Large Span Highway CFST through Arch Bridge

Author:

Liu Zengwu12,Wu Yuexing3,Wang Chengwei24,Fan Yonghui2,Luo Chao2ORCID,Wang Shaorui2

Affiliation:

1. School of Transportation and Civil Engineering, Shandong Jiao Tong University, Changqing District, Jinan 250357, China

2. State Key Laboratory of Mountain Bridge and Tunnel Engineering, Chongqing Jiaotong University, Chongqing 400074, China

3. School of Civil Engineering, Hunan City University, Yiyang 413000, China

4. Smart Sensors and NDT Laboratory, Department of Civil, Materials, and Environmental Engineering, University of Illinois at Chicago, W. Taylor Street, Chicago, IL 60607, USA

Abstract

To investigate the reasonable range of the inclination angle of arch ribs, a spatial finite element method was employed based on a concrete-filled steel tube (CFST) basket-handle through an arch bridge with a span of 360 m. A spatial finite element model was established using Midas/Civil software, which was verified with actual bridge data. The effects of different arch rib inclination angles were investigated under static loads. The structural natural frequencies, linear elastic stability coefficients, internal forces, and displacements were comprehensively considered to determine the reasonable range of the inclination angle. The results show that when the inclination angle ranges between 8° and 10°, the first, third, and sixth natural frequencies of the structure are increased. It effectively improves the lateral and torsional stiffness of the arch ribs while ensuring optimal out-of-plane stability of the arch ribs. Compared with the parallel arch, the stability is improved by 20.2%. The effects of angle variation on displacement and internal force of the arch ribs were not significant. Considering all indicators, the optimal range of the inclination angle for the arch ribs of 300-m-level highway CFST arch bridges is suggested to be 8~10°.

Funder

Guangxi Key R&D Plan

National Natural Science Foundation Youth Fund Project

Chongqing Natural Science Foundation General Project

Science and Technology Innovation Project of the Chongqing Education Commission for the Construction of the Chengdu Chongqing Double City Economic Circle

Special Key Project for Technological Innovation and Application Development in Chongqing

Publisher

MDPI AG

Subject

Building and Construction,Civil and Structural Engineering,Architecture

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