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Analytical model for time history analysis of single pier bridges considering soil-pile structure interaction effects

机译:考虑土桩结构互动效应的单墩桥时间历史分析的分析模型

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This study presents simplified analytical model to analyze the seismic response of typical bridge considering soil-pile structure interaction (SPSI). For this purpose, a typical bridge was selected as a case study. A 6 DOF model was developed by considering the effects of SPSI. In order to evaluate the performance of the analytical model, modal analysis of MRO bridge was first performed. According to the results, the natural period of the MRO bridge was 0.40 s. The natural period calculated in this study differs by 1.7% to 16% from other studies. Three earthquake records were then used to examine the performance of the proposed analytical model for predicting the seismic behavior of the bridge. The analytical model can predict the response of the maximum acceleration of deck up to 16% difference from that of the instrumented structure. Considering the effects of SPSI, the calculated acceleration response for bridge deck is on average 5% to 40% closer to the instrumentation data than the fixed base condition. The proposed analytical model could predict the acceleration response spectra for all three earthquakes with a relatively good approximation. Considering the effects of soil-pile structure interaction, the calculated natural period of bridge system is 10% to 40% closer to the instrumentation data than the fixed base condition.
机译:本研究提出了考虑土桩结构相互作用(SPSI)的典型桥梁地震反应的简化分析模型。为此目的,选择一个典型的桥梁作为案例研究。通过考虑SPSI的影响,开发了6 DOF模型。为了评估分析模型的性能,首先进行MRO桥的模态分析。根据结果​​,MRO桥的自然时期为0.40秒。本研究中计算的自然时期不同于其他研究的1.7%至16%。然后使用三种地震记录来检查所提出的分析模型的性能,以预测桥梁的地震行为。分析模型可以预测从仪表结构的最大加速度的响应高达16%的差异。考虑到SPSI的效果,桥式甲板的计算加速度响应平均比固定基本条件更接近仪表数据。所提出的分析模型可以预测所有三个地震的加速度响应光谱,具有相对良好的近似。考虑到土桩结构相互作用的影响,桥梁系统的计算天然时期比固定基地条件更接近仪表数据的10%至40%。

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