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Seismic energy dissipation and local concentration of damage in bridge bents

机译:桥梁弯道的地震能量耗散和局部损伤集中

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摘要

Seismic damage on bridge systems is basically concentrated on the piers. Hence, it is necessary to develop comprehensive studies oriented to improve our understanding of the bridge bents seismic response. Accordingly, the seismic behaviour and local concentration of damage within a typical bridge bent were analysed, considering different rotational restrictions of the foundation-soil system and different steel ratio arrangements. The contributions to structural damage of both, maximum deformation and cumulative damage, were assessed for records with different characteristics. The results showed that the amount of damage dissipated by the bent and the distribution of damage were strongly affected by the flexural strength variation along the columns. In models with non-uniform strength distribution, the inelastic demands were concentrated on few plastic hinges and bent degradation and failure were reached before the energy dissipation capacity of all potential hinges occurred. The analyses results also showed that the rotational restriction imposed by the foundation had a notable influence on the energy dissipation capacity and location of damage. Finally, the determination of damage indices in plastic hinge regions showed that most of the damage is produced by the cumulative effect of plastic energy dissipation, independently of the ground motion characteristics.
机译:桥梁系统的地震破坏基本上集中在码头上。因此,有必要开展全面的研究,以提高我们对桥梁弯道地震反应的理解。因此,考虑了基础-土体系统的不同旋转约束和不同的钢比布置,分析了典型桥梁弯头内的地震行为和局部损伤集中。对于具有不同特征的记录,评估了最大变形和累积破坏对结构破坏的贡献。结果表明,弯曲引起的破坏量和破坏的分布受到柱沿弯曲强度变化的强烈影响。在强度分布不均匀的模型中,非弹性需求集中在很少的塑料铰链上,并且在所有潜在铰链的能量消散能力出现之前就达到了弯曲退化和破坏。分析结果还表明,基础施加的旋转约束对消能能力和损伤位置有显着影响。最后,确定塑料铰链区域的破坏指数表明,大部分破坏是由塑性能量耗散的累积效应产生的,与地面运动特征无关。

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