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Seismic response analysis of highway overcrossings including soil-structure interaction

机译:公路交叉路口的地震反应分析,包括土-结构相互作用

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This paper presents a systematic procedure for the seismic response analysis of highway overcrossings. The study employs an elementary stick model and a more sophisticated finite element formulation to compute response quantities. All dynamic stiffnesses of approach embankments and pile groups are approximated with frequency-independent springs and dashpots that have been established elsewhere. A real eigenvalue analysis confirms the one-to-one correspondence between modal characteristics obtained with the three-dimensional finite element solutions and the result of the simpler stick-model idealization. A complex eigenvalue analysis yields modal damping values in the first six modes of interest and shows that modal damping ratios assume values much higher than those used by Caltrans. The validity of the proposed method is examined by comparing the computed time response quantities with records from the Meloland Road and Painter Street overcrossings located in southern and northern California, respectively. The proposed procedure allows for inexpensive parametric analysis that examines the importance of considering soil-structure interaction at the end abutments and centre bent. Results and recommendations presented by past investigations are revisited and integrated in comprehensive tables that improve our understanding of the dynamic characteristics and behaviour of freeway overcrossings. The study concludes with a step-by-step methodology that allows for a simple, yet dependable dynamic analysis of freeway overcrossings, that involves a stick model and frequency-independent springs and dashpots.
机译:本文提出了公路立交桥地震反应分析的系统程序。该研究采用基本杆模型和更复杂的有限元公式来计算响应量。进近路堤和桩群的所有动态刚度都可以通过在其他地方建立的与频率无关的弹簧和阻尼器来估算。真实的特征值分析确认了使用三维有限元解获得的模态特征与更简单的棒模型理想化结果之间的一一对应关系。复杂的特征值分析会产生感兴趣的前六个模态的模态阻尼值,并且表明模态阻尼比的值要比Caltrans所使用的值高得多。通过将计算出的时间响应量与分别位于加利福尼亚南部和北部的Meloland Road和Painter Street交叉点的记录进行比较,来检验所提出方法的有效性。拟议的程序允许进行廉价的参数分析,该分析检查了考虑在端基和中心弯曲处的土壤与结构相互作用的重要性。回顾和总结过去调查得出的结果和建议,并将其整合到综合表中,以增进我们对高速公路立交的动态特征和行为的理解。这项研究以逐步的方法论作为结束,该方法论允许对高速公路立交进行简单而可靠的动态分析,其中涉及杆模型以及与频率无关的弹簧和阻尼器。

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