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Influence of Pier Size on its Failure Mode under Near-Fault Vertical Earthquake

机译:近断层垂直地震下桥墩尺寸对其破坏模式的影响

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摘要

To calculate the influence of pier size on the pier failure mode, a double-span continuous girder bridge model was selected for analysis. The transient wave function expansion method was used to calculate the excitation conditions required for pier separation and the limit solution of pier longitudinal deformation under pier separation, and the indirect mode superposition method was used to calculate the vertical impact force of the pier-beam. The calculation results show that the higher the pier height, the smaller the section size, the larger the vertical seismic acceleration required to separate the pier-beam, the smaller the vertical contact force of the pier-beam, and the larger the most unfavorable value of the longitudinal deformation of the pier caused by separation. The stress of the bridge pier before and after separation is compared and the influence of separation on the failure of the bridge pier is put forward. The study shows that when pier and beam separation occurs, there may be multiple failure modes superimposed on the pier, and the first failure mode will have variation with the change in pier size.
机译:为计算桥墩尺寸对桥墩破坏模式的影响,选取双跨连续梁桥模型进行分析。采用瞬态波函数展开法计算墩分离所需的激励条件和墩分离下墩纵向变形的极限解,采用间接模态叠加法计算墩梁的竖向冲击力。计算结果表明:墩高越高,截面尺寸越小,分离墩梁所需的竖向地震加速度越大,墩梁的竖向接触力越小,墩梁分离引起的纵向变形最不利值越大。对比了桥墩分离前后的应力,提出了分离对桥墩破坏的影响。研究表明,当墩梁分离发生时,墩上可能叠加了多种破坏模式,且第一种破坏模式会随着桥墩尺寸的变化而变化。

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