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Dynamic soil-structure interaction of bridge-pier caisson foundations

机译:桥墩沉箱基础的动态土结构相互作用

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This paper presents the main results of 3D FE dynamic analyses carried out in the time domain to assess the seismic performance of rigid and massive circular caisson foundations supporting bridge piers. Various foundations systems are subjected to a real acceleration time history. Soil behaviour is described by an elastic-plastic model capable to provide a fair estimate of nonlinear soil behaviour and hysteretic damping under cyclic loading conditions. The coupled dynamic analyses are carried out in terms of effective stresses, thus evaluating the excess pore water pressures induced by earthquake loadings. Caisson construction stages are reproduced in a simplified way. The influence of pier height and caisson slenderness on maximum and permanent displacement and rotation attained during and at the end of the seismic shaking is considered. The equivalent seismic coefficient to be adopted in a pseudo-static analysis to check the safety of the foundation against geotechnical limit states is also evaluated.
机译:本文介绍了时域中实施的3D FE动态分析的主要结果,以评估支撑桥墩刚性和大规模圆形沉箱基础的地震性能。各种基础系统经受真正的加速时间历史。通过弹性塑料模型描述了土壤行为,能够在环状负载条件下提供非线性土壤行为和滞后阻尼的公平估计。在有效应力方面进行耦合的动态分析,从而评估由地震载荷引起的过量的孔隙水压。沉箱施工阶段以简化的方式再现。考虑了码头高度和沉默细长对地震振动结束期间和旋转的最大和永久位移和旋转的影响。还评估了在伪静态分析中采用的等同地震系数,以检查岩土基极限状态的基础的安全性。

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