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Three-dimensional finite element modelling for seismic response analysis of pile-supported bridges

机译:桩支撑桥梁地震响应分析的三维有限元建模

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摘要

Soil-structure interaction (SSI) is involved in the pile-supported structures. Such effect is mainly accounted for soil-pile interaction (SPI) driven by the deformation of pile and surrounding soil, and thus it can become significantly obvious due to large soil deformation during a severe earthquake. To capture this characteristic of simply supported bridge structure with pile foundations, a three-dimensional (3D) finite element (FE) model is developed using the computational platform OpenSees considering SPI. A two-span reinforced concrete bridge with a single pier located in multi-layered clay is employed as a test-bed. A variety of seismic responses of this coupled soil-pile-bridge system are systematically investigated. Furthermore, a parametric study is performed to explore the influences of SPI, multidirectional excitation and earthquake characteristic on the seismic responses of soil and structure. The results show that: (1) the seismic response of the bridge structure is significantly affected by its longitudinal and transversal different configuration; (2) the fixed-base support type noticeably influences the seismic response of bridge structure and (3) the direction and characteristic of base input earthquake motion greatly influence the seismic response of the bridge-soil system.
机译:土壤结构相互作用(SSI)涉及桩支撑的结构。这种效果主要占由桩和周围土壤变形驱动的土壤桩相互作用(SPI),因此由于严重地震期间的土壤变形而导致它可能会显着明显。为了捕获具有桩基的简单支持的桥梁结构的这种特性,使用考虑SPI的计算平台开放式开发了一种三维(3D)有限元(FE)模型。具有位于多层粘土中的单个码头的双跨度钢筋混凝土桥被用作试验台。系统地研究了该联接土桩桥系统的各种地震反应。此外,进行参数研究以探讨SPI,多向激励和地震特征对土壤和结构的地震反应的影响。结果表明:(1)桥梁结构的地震反应受其纵向和横向不同配置的显着影响; (2)固定基础支撑型显着影响桥梁结构的地震响应和(3)基地输入地震运动的方向和特征极大地影响了桥梁土体系的地震反应。

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