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Seismic Strengthening Design and Construction of Rocking Piers of a Road Bridge

机译:某公路桥梁摇摆墩抗震加固设计与施工

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On April 14, 2016, an earthquake of magnitude 7.3 hit in Kumamoto Prefecture, Japan. 12 bridges were damaged and could not be restored in a short time, significantly impacting the transportation of relief supplies through emergency roads to the disaster areas. Among them, an expressway bridge supported by rocking piers collapsed, which had never occurred in past earthquakes. The collapse was caused by the failure of restraint details on an abutment. The rocking piers, however, failed to prevent the superstructure from falling subsequently, because the pier joints with the girders and pile caps were all hinges that provided no restraint to superstructure. With this collapse as a starting point, seismic strengthening of bridges with rocking piers has started being implemented all over Japan. The authors' company launched a strengthening project in July 2017. Among the expressways under our management, the Tomei Expressway has the largest traffic volume. Any bridge falling of the expressway may cause enormous damage. This paper presents a strengthening design and construction of a bridge in the Tomei Expressway for its rocking piers. The rocking piers were strengthened by installing braces between each two neighboring piers. In addition, based on a nonlinear dynamic analysis, the pile caps under the piers were strengthened by thickening the cross section area and rigidizing their joints with the piers using reinforced concrete, in order to provide sufficient shear and bending capacity. The pivot bearings of the piers that support the girders were also strengthened, by installing restrained and side surface steel plates. The strengthening construction was started in August 2018 and completed in March 2019.
机译:2016年4月14日,日本熊本县发生里氏7.3级地震。12座桥梁受损,无法在短时间内修复,严重影响了通过紧急道路向灾区运送救援物资。其中,一座由摇摆墩支撑的高速公路桥梁倒塌,这在过去的地震中从未发生过。坍塌是由桥台上的约束细节失效引起的。然而,摇摆式桥墩未能防止上部结构随后倒塌,因为桥墩与主梁和桩帽的接缝都是铰链,对上部结构没有任何约束。以这次坍塌为出发点,日本各地开始对带有摇摆墩的桥梁进行抗震加固。作者的公司于2017年7月启动了一个加固项目。在我们管理的高速公路中,通美高速公路的交通量最大。高速公路上的任何桥梁倒塌都可能造成巨大的破坏。本文介绍了通美高速公路一座摇摆墩桥梁的加固设计与施工。摇摆墩通过在两个相邻墩之间安装支架进行加固。此外,基于非线性动力分析,桥墩下的桩帽通过加厚横截面积并使用钢筋混凝土加固其与桥墩的接头来加固,以提供足够的剪切和弯曲能力。通过安装约束钢板和侧面钢板,支撑大梁的桥墩的枢轴轴承也得到了加强。加固施工于2018年8月开始,2019年3月完成。

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