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Seismic Performance Evaluation of a Fully Integral Concrete Bridge with End-Restraining Abutments

机译:端部约束桥台的完整整体混凝土桥的抗震性能评估

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摘要

A fully integral bridge that is restrained at both ends by the abutments has been proposed to form a monolithic rigid frame structure. Thus, the feasible horizontal force effect due to an earthquake or vehicle braking is mainly prevented by the end-restraining abutments. In a recent study, a fully integral bridge with appropriate end-restraining abutment stiffness was derived for a multispan continuous railroad bridge based on linear elastic behavior. Therefore, this study aims to investigate the nonlinear behavior and seismic capacity of the fully integral bridge and then to assess the appropriate stiffness of the end-restraining abutment to sufficiently resist design earthquake loadings through a rigorous parametric study. The finite element modeling and analyses are performed using OpenSees. In order to obtain the force-deflection curves of the models, nonlinear static pushover analysis is performed. It is confirmed that the fully integral bridge prototype in the study meets the seismic performance criteria specified by Caltrans. The nonlinear static pushover analysis results reveal that, due to the end-restraining effect of the abutment, the lateral displacement of the fully integral bridge is reduced, and the intermediate piers sustain less lateral force and displacement. Then, the sectional member forces are well controlled in the intermediate piers by a proper application of the end-restraining abutments.
机译:已经提出了一种完全一体的桥,该桥的两端都被基台约束,以形成整体式刚性框架结构。因此,主要通过端部约束支座来防止由于地震或车辆制动引起的可行的水平力效应。在最近的研究中,基于线性弹性行为,为多跨连续铁路桥梁推导了具有适当的末端约束基台刚度的完全整体桥梁。因此,本研究旨在研究完全整体式桥梁的非线性行为和抗震能力,然后通过严格的参数研究评估端部约束桥台的适当刚度,以充分抵抗设计地震荷载。使用OpenSees进行有限元建模和分析。为了获得模型的力-挠度曲线,进行了非线性静态推覆分析。可以确定的是,研究中的完全集成式桥梁原型符合Caltrans指定的抗震性能标准。非线性静力推覆分析结果表明,由于基台的端部约束作用,减少了整体桥的横向位移,中间墩承受的横向力和位移也较小。然后,通过适当地施加末端约束的支座,可以很好地控制中间墩中的截面构件力。

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  • 来源
    《Advances in civil engineering》 |2019年第4期|6873096.1-6873096.12|共12页
  • 作者单位

    Hanbat Natl Univ Dept Civil Engn Daejeon 34158 South Korea;

    Sunkoo Engn Co Ltd Sunkoo Sq 5th Floor 85 Anyangpangyo Ro Uiwang Si 16004 Gyeonggi Do South Korea;

    Konkuk Univ Dept Civil Engn 120 Neudong Ro Seoul 05029 South Korea|Vinh Univ Dept Civil Engn 182 Le Duan Vinh 461010 Vietnam;

    Konkuk Univ Dept Civil Engn 120 Neudong Ro Seoul 05029 South Korea;

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