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Study on bearing structure and joint seismic resistance of large span non-landing arch on high-speed railway station

机译:大跨度非着陆拱在高速火车站轴承结构与关节地震抗性研究

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The main entrance of Chongqing West Railway Station adopts the non-landing compound arch with a span of 108m. In this paper, the nonlinear finite element theory is applied to analyze the bearing capacity and seismic ductility of the compound arch joints. Low frequency cyclic loading tests are performed on the 1/5 scale model. Based on the calculation and test results, a double beam structure and a section of steel truss are placed in the arch joints to bear the force of the arch. Moreover, the buckling-restrained brace (BRB) is placed in the lower part of the arch that enables most force directly transmit to the foundation of the arch. Unlike BRB's common use as an inter-column support, it now acts as a buckling constraint support in the large earthquake. For instance, it can be yielded before the frame column to improve earthquake resistance. The research results indicate that the compound arch joint structure successfully accomplishes the seismic design goals of strong joints with weak component. Moreover, the study provides the theoretical basis and design reference for the application of BRB and long-span arch structures in high-speed railway station.
机译:重庆西火车站的主要入口采用了非陆性复合拱,跨度为10.8米。本文采用非线性有限元理论来分析复合拱关节的承载力和地震延性。低频循环加载测试是在1/5比例模型上进行的。基于计算和测试结果,将双梁结构和一段钢桁架放置在拱形接头中以承受拱的力。此外,将屈曲束缚的支撑括号(BRB)放置在拱的下部,使得大多数力直接传递到拱的基础。与BRB的常用用作柱间支持不同,它现在充当大地震中的屈曲约束支持。例如,可以在框架柱之前产生,以改善地震阻力。研究结果表明,复合拱联合结构成功完成了具有弱组件的强关节的地震设计目标。此外,该研究提供了在高速火车站中应用BRB和长跨度拱结构的理论基础和设计参考。

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