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An Investigation of Damage Mechanism Induced by Earthquake in a Plate Girder Bridge Based on Seismic Response Analysis: Case Study of Tawarayama Bridge under the 2016 Kumamoto Earthquake

机译:基于地震反应分析的板梁桥地震破坏机理研究-以2016年熊本地震为例的田原山桥为例

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摘要

This paper reports a damage survey and seismic analysis of a bridge. In the first part, the damage survey of some bridges that were affected by the 2016 Kumamoto Earthquake was discussed. Among these bridges, the Tawarayama Bridge, which is a plate girder bridge located very close to an active fault line, was particularly considered. This bridge incurred severe damage because of the earthquakes' epicenters very close to the bridge. The damage mechanism that can occur in this type of bridge was elucidated. During the damage survey, parts of Tawarayama Bridge were examined to determine the damage in order to examine the factors of occurrence and damage mechanism. In the second part, the seismic responses of Tawarayama Bridge were analyzed using ABAQUS software, and beam elements were applied for the structural members. Firstly, the time-history responses were analyzed using both longitudinal and transverse direction earthquake ground motions separately and simultaneously to investigate the dynamic response of the bridge. Both undamped and damped conditions were considered. For the dynamic response analysis, the recorded earthquake acceleration data of Ozu Station were applied for both undamped and damped conditions considering both east-west (EW) and north-south (NS) directions simultaneously and the damped condition for these directions separately. In addition, a damped model was analyzed by applying design earthquake input data obtained from the Japanese Seismic Design Specifications for Highway Bridges. Consequently, five cases were established for seismic response analysis. Subsequently, the seismic responses of Tawarayama Bridge were investigated, and the behavior of the lower lateral members was examined considering the observed buckling of these members during the damage survey. The field survey and dynamic response analysis indicate that the buckling design of the lower lateral members should be considered in the future design of bridges.
机译:本文报告了桥梁的损伤调查和地震分析。在第一部分中,讨论了一些受到2016年熊本地震影响的桥梁的损坏情况调查。在这些桥梁中,特别考虑了非常靠近活动断层线的板梁桥田原山桥。由于地震震中非常靠近桥梁,因此这座桥梁遭受了严重破坏。阐明了在这种类型的桥梁中可能发生的损坏机理。在损害调查中,对田原山桥的部分进行了检查以确定损害,以检查发生因素和损害机理。在第二部分中,使用ABAQUS软件分析了Tawarayama桥的地震响应,并在结构构件中应用了梁单元。首先,分别并同时使用纵向和横向地震地震动对时程响应进行分析,以研究桥梁的动力响应。同时考虑了无阻尼和阻尼条件。为了进行动力响应分析,将大津站的地震加速度数据记录在无阻尼和有阻尼条件下,同时考虑了东西向(EW)和南北(NS)方向,并分别考虑了这些方向的阻尼条件。另外,通过应用从日本公路桥梁抗震设计规范中获得的设计地震输入数据来分析阻尼模型。因此,确定了五个案例进行地震响应分析。随后,研究了田原山桥的地震反应,并考虑了在损伤调查中观察到的这些构件的屈曲,检查了下部横向构件的行为。现场调查和动力响应分析表明,在桥梁的未来设计中应考虑下部侧梁的屈曲设计。

著录项

  • 来源
    《Advances in civil engineering》 |2018年第6期|9293623.1-9293623.19|共19页
  • 作者单位

    Kumamoto Univ, Fac Adv Sci & Technol, Kumamoto 8608555, Japan;

    Kumamoto Univ, Grad Sch Sci & Technol, Kumamoto 8608555, Japan;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:53:58

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