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Evaluating seismic demands for segmental columns with low energy dissipation capacity

机译:评估低耗能能力的分段柱的抗震要求

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Post-tensioned precast segmental bridge columns have shown high level of strength and ductility, and low residual displacement, which makes them suffer minor damage after earthquake loading; however, there is still lack of confidence on their lateral response against severe seismic loading due in part to their low energy dissipation capacity. This study investigates the influence of major design factors such as post-tensioning force level, strands position, columns aspect ratio, steel jacket and mild steel ratio on seismic performance of self-centring segmental bridge columns in terms of lateral strength, residual displacement and lateral peak displacement. Seismic analyses show that increasing the continuous mild steel ratio improves the lateral peak displacement of the self-centring columns at different levels of post-tensioning (PT) forces. Such an increase in steel ratio reduces the residual drift in segmental columns with higher aspect ratio more considerably. Suggestions are proposed for the design of self-centring segmental columns with various aspect ratios at different target drifts.
机译:后张预应力节段桥柱具有较高的强度和延性,并且残余位移低,这使其在地震荷载作用下受到较小的破坏。然而,由于它们的低能量消散能力,他们对严重地震载荷的横向响应仍然缺乏信心。本研究从侧向强度,残余位移和侧向方面研究了主要设计因素(如后张拉力水平,钢绞线位置,柱长宽比,钢套和低碳钢比)对自定心分段桥柱的抗震性能的影响。峰值位移。地震分析表明,在不同水平的后张拉力(PT)下,增加连续低碳钢的比例可以改善自定心柱的侧向峰值位移。钢比率的这种增加更显着地减少了高纵横比的分段塔中的残余漂移。对于在不同目标漂移下具有不同纵横比的自定心分段柱的设计提出了建议。

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