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Hysteretic model for steel piers considering the local buckling of steel plates

机译:考虑钢板局部屈曲的钢墩滞回模型

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摘要

The pier is a vital structural component of bridges and thus critically considered in the seismic design. In order to provide an accurate and efficient methodology in the analysis of seismic response, a hysteretic model considering the effect of local buckling of steel plates is proposed for steel piers. In the hysteretic model, the GiuffreMenegotto-Pinto hysteresis model is employed to establish the hysteresis curve equation, and the energy-based Ibarra-Krawinkler degradation rule is followed to describe the deterioration rule of structural bearing capacity and stiffness. In this study, a widely used Chinese steel Q345qC was taken as an example to illustrate the proposed model for steel piers. At first, the seismic performance of steel piers under horizontal cyclic load was analyzed. Then, the empirical formulae of the vital limit state points for evaluating the structural seismic performance were established, and further the identification of the decisive parameter (degradation parameter) of the hysteretic model was carried out. Morever, the verification on the effectiveness of the proposed model was verified, and the results showed its applicability and accuracy for steel piers under horizontal cyclic loads. Finally, the application of the proposed model in the seismic calculation of steel piers was interpreted.
机译:桥墩是桥梁的重要结构部件,因此在抗震设计中被严格考虑。为了在地震反应分析中提供一种准确有效的方法,提出了考虑钢板局部屈曲影响的滞回模型。在滞后模型中,采用GiuffreMenegotto-Pinto滞后模型建立滞后曲线方程,并遵循基于能量的Ibarra-Krawinkler退化规律来描述结构承载力和刚度的退化规律。在这项研究中,以广泛使用的中国Q345qC钢为例来说明所提出的钢墩模型。首先,分析了水平循环荷载作用下钢墩的抗震性能。然后,建立了用于评估结构抗震性能的生命极限状态点的经验公式,并进一步确定了滞后模型的决定性参数(退化参数)。此外,对所提模型的有效性进行了验证,结果表明了该模型在水平循环荷载作用下对钢墩的适用性和准确性。最后,解释了该模型在钢墩抗震计算中的应用。

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