Reconstruction and validation of ground motions across dip-slip faults: an application to response analysis of a long-span suspension bridge

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作者
Hongyu Jia
Wei Cheng
Kang Jia
Yikun Zhai
Shixiong Zheng
机构
[1] Southwest Jiaotong University,School of Civil Engineering
[2] Ministry of Education,State Key Laboratory of Bridge Intelligent and Green Construction
来源
关键词
Dip-slip fault; Fling-step effect; Directivity effect; Fault-crossing suspension bridge; Fault rupture permanent surface displacement;
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学科分类号
摘要
Recent seismic events have unequivocally highlighted the susceptibility of fault-crossing bridges to the synergistic effects of ground surface vibrations on either side of the fault plane and the tectonic dislocations arising from fault-induced surface ruptures. This study delineates both seismic and parametric response analyses of fault-crossing suspension bridges, employing a straightforward yet efficacious method for simulating desired ground motions near fault-rupture zones. Herein, we introduce a user-friendly method to incorporate predicted fault-induced displacements, accounting for both fling-step and directivity effects, into processed ground motion chronologies, enabling the generation of dip-slip fault ground motions. The accuracy and efficacy of the proposed method are affirmed by juxtaposing the generated ground motions with the observed ones (MGM). An exhaustive parametric analysis, addressing factors like fault-crossing location, fault-crossing angle, and frequency components of fault-crossing ground motions, of a suspension bridge over a rupture fault, is executed using the fashionable ANSYS software. This study provides clear and specific guidelines for the seismic design of suspension bridges traversing rupture faults.
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