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大跨径连续刚构桥施工阶段开裂后结构性能评估研究
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(同济大学桥梁工程系, 上海 200092)

作者简介:

Jiasi Chen, M.E. Department of Bridge Engineering, Tongji University. Research Direction: Prestressed Concrete Bridge.

通讯作者:

Jiasi Chen

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Structural Performance Evaluation After Cracking During the Construction of Long-Span Continuous Rigid-Frame Bridges
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(Department of Bridge Engineering, Tongji University, Shanghai 200092, China)

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    摘要:

    大跨径桥梁施工阶段开裂评估技术是影响桥梁安全性能和处置措施决策的关键。本文针对贵州省某连续刚构桥施工阶段墩顶0号块开裂问题,结合裂缝深度、长度和位置等实测数据,采用有限元软件Midas FEA对该桥开裂后完全封闭与开裂后不封闭这两种极端处置措施对全桥结构性能的影响进行分析,并与未开裂的原设计结构进行比较。分析结果表明,开裂后完全封闭的结构与未开裂原设计的结构性能基本一致。开裂后不封闭对墩顶0号块附近的顶底板和腹板受力存在较大影响,主要体现在墩顶0号块附近的顶底板和腹板应力水平高于未开裂模型。该研究综合考虑了最不利情况,深入研究施工阶段桥梁裂缝对于全桥结构性能的影响,对于施工阶段出现裂缝后桥梁安全性能评估和处置措施决策具有重要作用,同时可以为后续桥梁在施工阶段出现裂缝后全桥性能的评估提供实践参考。

    Abstract:

    Cracking evaluation technology during construction is crucial for evaluating the safety performance of long-span bridges and for selecting remedial measures. In this paper, by focusing on the cracking of pier cap block 0 during the construction of a continuous rigid-frame bridge in Guizhou Province and combining this information with measured data, such as crack depth, length, and position, the effects of two extreme remedial measures—complete closure after cracking and nonclosure after cracking—on the structural performance of the entire bridge are analyzed using the finite element software Midas FEA and compared with the originally designed structure without cracking. The analysis results indicate that the structural performance of the completely closed structure after cracking is basically consistent with that of the originally designed undamaged structure. Nonclosure after cracking has a significant impact on the stress distributions of the top and bottom slabs and webs near pier cap block 0, and the stress levels of these components are greater than those of the undamaged model. In this study, the most unfavorable conditions are comprehensively considered, and the influences of bridge cracks during the construction stage on the structural performance of the entire bridge are investigated. This investigation plays an important role in the safety performance evaluation after cracking during the construction of bridges, and it can serve as a practical reference for these tasks.

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引用本文

Jiasi Chen, Chengyue Wang, Yin Shen Structural Performance Evaluation After Cracking During the Construction of Long-Span Continuous Rigid-Frame Bridges. Prestress Technology 2024,2(01):41-55. 10.59238/j. pt.2024.01.004

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  • 收稿日期:2024-01-05
  • 最后修改日期:2024-02-26
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  • 在线发布日期: 2024-04-01
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