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Hybrid simulation of bridges constructed with concrete-filled steel tube columns subjected to horizontal and vertical ground motions

机译:用水平和垂直地运动的混凝土钢管柱构造的桥梁混合仿真

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This paper presents the application of multi-axis hybrid simulation for evaluating the seismic response of a rigid-frame bridge structure constructed with concrete-filled steel tube (CFST) columns subjected to combined horizontal and vertical ground motions. These types of bridges are believed to have superior seismic performance and better ability to withstand collapse when subjected to extreme multi-directional seismic loads. The case-study hybrid model was a 1:3 scaled bridge structure with three spans and double-column bents. The experimental element consisted of one CFST column while the rest of the bridge elements were modelled numerically in the computer. Two popular cross-section shapes of circular and square CFST columns were tested and compared. The structure was subjected to the horizontal (longitudinal) and vertical components of the Northridge ground motion with five increasing intensity levels to cover all scenarios ranging from frequent to very rare events during the lifecycle of the structure. A state-of-the-art hybrid testing facility, referred to as the multi axis substructure testing system, was used to simulate complex boundary effects on the physical specimen using mixed load/deformation modes. The bridge columns showed great levels of ductility and no sign of severe damage or loss of stability, while they were subjected to large axial force variations and lateral deformation demands during hybrid simulations. The superior seismic performance of CFST elements highlights their benefit in construction of more resilient bridges, particularly those with the vital roles in post-disaster operations.
机译:本文介绍了多轴混合模拟,用于评估用混凝土填充钢管(CFST)柱构成的刚性框架桥结构的地震响应,经受横垂直和垂直接地运动的柱子。这些类型的桥梁被认为具有出色的地震性能和更好的能力,当受到极端的多向地震载量时,能够承受坍塌的能力。案例研究混合模型是1:3缩放的桥梁结构,具有三个跨度和双柱距。实验元件由一个CFST列组成,而桥接元件的其余部分在计算机上以数字方式进行建模。测试并比较了两种流行的圆形和方形CFST柱的横截面形状。该结构经受了诺尔奇触控运动的水平(纵向)和垂直部件,五个增加的强度水平,以覆盖在结构的生命周期中频繁到非常罕见的事件的所有场景。使用混合载荷/变形模式,使用称为多轴子结构测试系统的最先进的混合测测试设施来模拟物理样本上的复杂边界效应。桥柱显示出较大的延展性水平,并且没有严重损坏或稳定性损失的迹象,而在混合模拟期间对它们进行大的轴向力变化和横向变形要求。 CFST元素的卓越地震性能突出了它们在灾后行动中具有重要角色的施工方面的益处。

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