某特大简支梁桥墩身开裂的事故排查
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国家自然科学基金(51578098);重庆科委项目(20130844)


Accident investigation of a large bridge pier cracking
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    摘要:

    桥梁裂缝严重影响结构安全性和耐久性,不符合“绿色建造”和“可持续发展”的相关理念。文章对某特大简支梁桥桥墩开裂现象进行事故排查,为裂缝修复工作提供依据,以促进桥梁施工各个环节的规范化。考虑支座中未拆除的临时连接螺栓对墩、梁的约束作用,首先以Abaqus分析未拆除的临时连接螺栓对支座水平剪切变形的约束作用,然后以Midas计算了3种最不利工况下桥墩墩顶处的支座反力,最后以ANSYS分析3种最不利荷载组合时墩身应力。结果表明,即使按墩顶的4个纵向活动支座临时连接被同时破坏的最不利情况考虑,墩身在3种最不利工况下的最大主拉应力也仅为0.08 MPa,远未达到C30混凝土的拉应力容许值0.73 MPa。因此,架梁完成后未及时拆除支座临时连接的限位螺栓并不是导致该桥墩身开裂的主要原因,事故调查需从其他方面入手。但该疏忽会在桥墩中引起拉应力,应尽量避免,确保桥梁建造的各个环节更为规范。

    Abstract:

    Bridge cracks seriously affect the structural safety and durability, which don’t conform to the concepts of "green construction" and "sustainable development". In consideration of the cracks of a large beam bridge pier, an accident investigation is performed to provide the basis for the reconditioning works and to promote the standardization of the bridge construction. Taking into account these temporary connection bolts which had not been dismantled in time, their constraint effect on bearing horizontal shear deformation was calculated by ABAQUS code, then, the bearing reaction forces at pier top on three kinds of most unfavorable conditions were figured out by Midas code. After that, the pier stress were analyzed by ANSYS code. It showed that, in the case of the four temporary connection bolts are all destroyed at the same time, the maximum principal tensile stress of the three kinds of most unfavorable conditions is just 0.08 MPa, which is far from allowable value 0.73 MPa.Therefore, the pier cracks were not attributed to the fact that these temporary connection bolts had not been removed in time, others should be taken account into the investigation.

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吴波,张亮亮,高永,苏春雷,原野.某特大简支梁桥墩身开裂的事故排查[J].土木与环境工程学报(中英文),2015,37(Z2):110-116. Wu Bo ab, Zhang Liangliang, Gao Yong, Su Chunlei, Yuan Ye. Accident investigation of a large bridge pier cracking[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2015,37(Z2):110-116.[doi]

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  • 收稿日期:2015-11-10
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  • 在线发布日期: 2016-03-14
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