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Problems in applying code-specified capacity design procedures to seismic design of tall piers

机译:将规范规定的能力设计程序应用于高墩抗震设计中的问题

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This paper deals with the analysis of the seismic behaviour of bridges characterized by tall piers, focusing on the effectiveness of current "capacity design" methods. It is shown, in particular, that this design strategy may prove inadequate in bridges whose seismic behaviour is governed by pier dynamics and, specifically, in the case of tall piers. To this end, a typical prestressed concrete segmental bridge was designed according to different criteria; then, a series of nonlinear dynamic time-history analyses was carried out in order to evaluate the influence of the characteristics of the excitation (i.e., duration and shape) on the seismic response. Finally, the overall capacity of the structure and the position of the dissipation zones, as forced in the capacity design, were verified, in order to validate indirectly the entire bridge design strategy that is currently adopted in seismic codes.
机译:本文着重分析以高墩为特征的桥梁的抗震性能,重点是当前“能力设计”方法的有效性。尤其表明,这种设计策略可能在桥墩的地震行为受桥墩动力学控制的桥梁中证明不充分,特别是在高墩墩的情况下。为此,根据不同的标准设计了典型的预应力混凝土分段桥。然后,进行了一系列非线性动态时程分析,以评估激励特性(即持续时间和形状)对地震响应的影响。最后,验证了在容量设计中强制执行的结构的整体容量和耗散区的位置,以便间接验证当前在地震规范中采用的整个桥梁设计策略。

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