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Influence of higher-order modes of slender tall pier bridge columns on the seismic performance of pile foundations

机译:苗条高墩桥柱高阶模式对桩基地震性能的影响

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Numerous highway bridges have been constructed with slender tall piers over 40 m in Southwest China, due to the mountainous topography. Current researches on this type of bridges mainly focus on the higher mode effects on the seismic behavior of pier columns, while the responses of group pile foundations are generally neglected. The objective of this paper is to investigate how the dynamic demand of group piles are influenced by the higherorder modes of slender tall pier columns. To better understand the influence of higher order modes, two analysis scenarios, representing (1) the equivalent single-degree-of-freedom (SDOF) system neglecting higher mode effects of piers, and (2) the multi-degree-of-freedom (MDOF) system of the original bridge, are developed and analyzed. Fiber elements are utilized considering the potential nonlinear behavior of pier columns and piles, while nonlinear p-y, t-z and q-z springs are employed simulating the properties of soil layers in these numerical models. Using displacement of pile cap as damage index, the effects of higher-order modes on pile foundations are investigated through both incremental dynamic analysis (IDA) and fragility analysis procedures. The results show that the seismic demands of pile foundations could be significantly underestimated when the contribution of higher-order modes of columns are neglected. The damage of piles is observed prior to that of the pier columns, indicating that damage state of pile foundations should be carefully considered during seismic design, and only focusing on the pier columns would lead to unconservative results. Furthermore, p-y springs are shown to perform nonlinearly under strong excitations, which implies that modeling the soil layers with linear springs is insufficient and should be better considered with these nonlinear springs.
机译:由于山地地形,众多高速公路在中国西南部40米以上超过40米的高速公路桥梁。目前对这种类型的桥梁的研究主要集中在码头柱的地震行为的更高模式影响,而群桩基础的反应通常被忽略。本文的目的是探讨组桩的动态需求如何受苗条高墩柱的高阶模式的影响。为了更好地了解高阶模式的影响,两个分析场景,代表(1)忽略码头的更高模式效果的等效单级自由度(SDOF)系统,以及(2)多程度自由度(MDOF)制定和分析了原始桥梁系统。考虑码柱和桩的潜在非线性行为,采用非线性P-Y,T-Z和Q-Z弹簧来利用纤维元件,而是模拟这些数值模型中土层的性质。利用桩帽的位移作为损伤指数,通过增量动态分析(IDA)和脆弱分析程序研究了高阶模式对桩基上的影响。结果表明,当忽略高阶模式的贡献时,可以显着低估桩基础的地震要求。在码头柱的底柱之前观察到桩的损坏,表明在地震设计期间应仔细考虑桩基的损坏状态,并且只关注码头柱将导致难以置信的结果。此外,对-Y弹簧被示出为在强激励,这意味着与线性弹簧建模土层不足,并且应与这些非线性弹簧可更好地考虑非线性执行。

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