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Comparison Between Two Modeling Aspects to Investigate Seismic Soil-Structure Interaction in a Jointless Bridge

机译:两种建模方面的比较研究无关桥中的地震土结构相互作用

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Seismic waves propagate through a series of rock and soil layers before they interact with the foundation and superstructure. Besides the original characteristics of the earthquake motion at the instant of fault rupture, it is also essential how the soil site responds in terms of amplification or de-amplification for different frequency contents. A coupled soil-structure model is required to capture the dynamic behavior of the entire system efficiently, considering the possible nonlinear response of soil and structure. This paper focuses on the comparison of two modeling strategies for Soil-Structure Interaction (SSI) aiming to define the behavior of a jointless bridge, namely, (a) one with an explicit full-scale soil domain with bridge model and (b) another with Beam on Dynamic Winkler's Foundation (BDWF)/nonlinear soil springs. Finally, the structural components that affect the overall behavior of superstructure are compared between these two models, and the variation of seismic response from the performance-based study is discussed.
机译:在它们与基础和上部结构相互作用之前,地震波通过一系列岩石和土壤层传播。除了故障破裂瞬间发生地震运动的原始特性外,土壤部位在不同频率内容的扩增或解放方面也是必要的。考虑到土壤和结构可能的非线性响应,需要耦合的土壤结构模型来捕获整个系统的动态行为。本文侧重于对土壤结构相互作用(SSI)进行两种建模策略的比较,旨在定义无关桥的行为,即(a)一个具有桥梁模型的明确全尺度土壤域,另一个(b)用梁在​​动态Winkler的基础(BDWF)/非线性土壤弹簧上。最后,在这两种模型之间比较了影响上层结构的整体行为的结构部件,并讨论了基于性能的研究的地震反应的变化。

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