Test and numerical investigations on the spatial mechanics characteristics of extra-wide concrete self-anchored suspension bridge during construction

Author:

Zhou Guangpan1ORCID,Li Aiqun23,Li Jianhui4,Duan Maojun4,Xia Zhiyuan5,Zhu Li6,Spencer Billie F7,Wang Bin1

Affiliation:

1. School of Science, Nanjing University of Science and Technology, Nanjing, China

2. Beijing Advanced Innovation Center for Future Urban Design, Beijing University of Civil Engineering and Architecture, Beijing, China

3. School of Civil Engineering, Southeast University, Nanjing, China

4. School of Civil Engineering, Nanjing Forestry University, Nanjing, China

5. School of Civil Engineering, Suzhou University of Science and Technology, Suzhou, China

6. School of Civil Engineering, Beijing Jiaotong University, Beijing, China

7. Department of Civil and Environmental Engineering, University of Illinois at Urbana–Champaign, Urbana, IL, USA

Abstract

This work is aimed at studying the mechanics characteristics of the self-anchored suspension bridge with extra-wide concrete girder during girder erection and system transformation. First, the determination and implementation processes of reasonable completion state were introduced briefly, taking the Hunan Road Bridge as the background project, which is the widest concrete self-anchored suspension bridge in China currently. Then, the ANSYS beam-type finite element model and field monitoring data were integrated to investigate the cable system evolutions during system transformation. Finally, the global refined finite element model was established using solid element to consider the shear lag effects in extra-wide girder. The measured data show that the cable displacements in tensioned domains were characterized by weak coherence and contraflexure characteristics. The longitudinal and transverse stresses of extra-wide girder distributed unevenly along transverse direction. The maximum shear lag coefficients of girder at completion state reached to 1.3. Moreover, small transverse compressive stress, or even the transverse tensile stress reaching to 1.80 MPa, appeared in the top plate segments. The measures including the arrangement optimization of transverse prestressed tendons and monitoring point redistribution were given. The research can provide references for the structural designing and safety control of the similar bridges.

Funder

Universities Natural Science Foundation of Jiangsu Province, China

specialized research fund for the doctoral program of higher education of china

Transportation Scientific Research Program of Jiangsu Province, China

National Natural Science Foundation of China

fundamental research funds for the central universities

Key Project of Foundation and Frontier Research of Chongqing

Publisher

SAGE Publications

Subject

Computer Networks and Communications,General Engineering

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