基于现场识别的相邻箱梁桥横向挠度影响线的接缝劣化检测

Dong‐Hui Yang, Hong Zhou, T. Yi, Hong‐Nan Li, H. Bai
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引用次数: 3

摘要

节点退化作为多梁桥横向传递内力的关键构件,会破坏多梁体系的协同工作机制,严重降低桥梁承载力。本研究旨在揭示关节损伤对横向内力传递的影响,并提出一种关节损伤检测与定位方法。建立了弹簧节理板模型,分析了节理损伤的影响,得到了节理剪力与节理抗剪刚度之间的关系。在此基础上,推导了基于横向挠度影响线的节点损伤指标,并提出了获取横向挠度影响线的桥梁荷载试验方法。通过多影响线共同求解损伤指标,可以准确地检测和定位桥侧方向的节点损伤。此外,通过对桥梁的多个截面进行损伤检测过程,还可以确定节点在桥梁纵向上的损伤位置。最后,以某相邻箱梁桥为例,验证了损伤检测方法的有效性。结果表明,该方法能有效识别和定位噪声干扰下单个或多个关节损伤位置,并能定量评价关节损伤程度。该研究可为相邻箱梁桥节点损伤识别提供有效的方法,具有较高的准确性和可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Joint deterioration detection based on field‐identified lateral deflection influence lines for adjacent box girder bridges
As critical components that transmit internal forces laterally in multigirder bridges, joint degradation can destroy the cooperative working mechanism of a multigirder system and seriously reduce bridge bearing capacity. This research aims to reveal the joint damage effects on lateral internal force transmission and propose a joint damage detection and location method. A spring‐jointed plate model is established to analyze the effects of joint damage, based on which the relationship between the shear forces in the joints and the shear stiffness of the joints can be obtained. Furthermore, a joint damage index is deduced based on the lateral deflection influence lines, and a bridge load testing method is proposed to obtain such influence lines. By using multiple influence lines to jointly solve the damage index, the joint damage in the lateral bridge direction can be accurately detected and located. In addition, by carrying out the damage detection process at several cross sections of the bridge, the joint damage position in the longitudinal bridge direction can also be determined. Finally, a numerical model of an adjacent box girder bridge is illustrated as an example to verify the effectiveness of the damage detection. It can be concluded that the proposed method can effectively identify and locate single or multiple joint damage locations under noise interference, and the joint damage degree can be quantitatively evaluated. This study can provide an effective method to identify the joint damage for adjacent box girder bridges with high accuracy and reliability.
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