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Finite element analysis-aided seismic behavior examination of modular underground arch bridge

机译:有限元分析 - 辅助地震行为检查模块化地下拱桥

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摘要

In this study, a 3D finite element analysis (FEA) is performed to examine the seismic behaviors of a three-hinge modular underground arch bridge (MUAB) subjected to a series of synthetic ground motions with a wide peakground-acceleration (PGA) spectrum. The FEA model of the MUAB under longitudinal and transverse synthetic ground-motion loading is described by several modeling parameters [e.g., arch-to-arch interaction (AAI), soil-structure interaction (SSI), and stiffness of prestressed rebar], to determine its various seismic response characteristics (i.e., maximum displacement, maximum tensile and compressive stresses, and maximum crack depth). The FEA results show that the MUAB's seismic responses differ with respect to earthquake-loading direction owing to the different levels of seismic resistance associated with the considered modeling parameters. To elucidate the influence of each modeling parameter on the seismic response, we performed MUAB parametric studies featuring different arch lengths, SSI and AAI friction coefficients, and prestressed-rebar stiffnesses. The key findings indicate that the seismic behaviors of MUABs depend on the PGAs and ground-motion directions; furthermore, they exhibited a sensitivity to the arch length and prestressed-rebar stiffness. In addition, the SSI friction coefficient exerted a minor influence on the seismic responses of MUABs, especially on their maximum compressive and tensile stresses and maximum crack depths; meanwhile, the AAI friction coefficient had a moderate influence upon seismic response.
机译:在该研究中,执行3D有限元分析(FEA)以检查三铰链模块地下拱桥(MUAB)的地震行为,其经受宽峰值加速度(PGA)光谱的一系列合成接地运动。在纵向和横向合成地面运动负载下MuEA的FEA模型由几种建模参数描述[例如,拱形拱形相互作用(AAI),土壤结构相互作用(SSI)和预应力钢筋的刚度],到确定其各种地震响应特性(即,最大位移,最大拉伸和压缩应力和最大裂纹深度)。 FEA结果表明,由于与所考虑的建模参数相关的地震抗性水平不同,Muab的地震反应在地震加载方向上不同。为了阐明每个建模参数对地震反应的影响,我们进行了不同的拱长,SSI和AAI摩擦系数和预应力钢筋刚度的Muab参数研究。关键发现表明,Muabs的地震行为取决于PGA和地运动方向;此外,它们对拱长和预应力钢筋僵硬表现出敏感性。此外,SSI摩擦系数对Muabs的地震反应产生了微小的影响,特别是在其最大压缩和拉伸应力和最大裂缝深度上;同时,AAI摩擦系数对地震反应具有适度的影响。

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