基于车桥耦合振动的在役连续刚构桥力学性能研究

Yixiang Liu, Lingbo Wang, Cong Jiang, Hao Shu
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引用次数: 0

摘要

本研究以陕西省一座受损的连续刚构桥为例,推导了裂缝损伤模拟算法和车桥耦合数值算法。然后,利用 ANSYS APDL 建立了有限元分析模型。采用 Newmark-β 迭代法研究了结构损伤前后不同车速、不同车重、不同损伤程度下的动态响应。在分析不同车速的影响时,结果表明,当车速为 80 km/h 时,未损坏桥梁关键截面的动态应力响应达到最大值,表明未损坏桥梁对 80 km/h 的车速比较敏感。受损桥梁的峰值响应为 90 km/h。此外,位移峰值和应力峰值一起上升和下降。对不同车辆重量和损坏程度的分析表明,随着车辆重量和损坏程度的增加,各部分的位移和冲击系数都显著增加。由此可以得出结论,现役桥梁的动力性能会随着损坏程度的加重而不断降低。因此,在养护中应重视车辆与桥梁耦合的影响,及时加固中跨的频繁开裂区域,防止进一步损坏。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on Mechanical Performance of In-Service Continuous Rigid-Frame Bridge Based on Vehicle-Bridge Coupling Vibration
Based on a damaged continuous rigid-frame bridge in Shaanxi Province, this study deduced the crack damage simulation algorithm and the vehicle-bridge coupling numerical algorithm. Then, it established a finite element analysis model using ANSYS APDL. The Newmark-β iterative method was used to study the dynamic response of different speeds, vehicle weights, and damage degrees before and after the structural damage. In the analysis of the influence of different speeds, the results showed that the dynamic stress responses of key sections of the undamaged bridge reached the maximum when the speed was 80 km/h, indicating that the undamaged bridge was sensitive to a speed of 80 km/h. The peak response of the damaged bridge was 90 km/h. In addition, the displacement peaks and the stress peaks rose and fell together. The analysis of different vehicle weights and damage degrees showed that with the increase in them, the displacement and impact coefficients of each section increased significantly. It can be concluded that the dynamic performance of the in-service bridge decreases continuously with the aggravation of the damage. Therefore, the influence of vehicle-bridge coupling should be emphasized in maintenance, and the frequent cracking area at the midspan should be strengthened in time to prevent further damage.
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