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SHAKE TABLE TESTS AND NUMERICAL MODELING OF SEISMICALLY ISOLATED RAILWAY BRIDGES

机译:地震孤立的铁路桥梁摇架测试和数值模型

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In the implementation of seismic isolation system to railway bridges, the basic requirements are as follows. The first is to secure the running safety of trains under occasional earthquake (Level 1) ground motion. For this purpose, the isolation bearings should work almost like fixed hinges not to allow large displacement. The second is to protect bridge piers from severe damage under rare earthquake (Level 2) ground motion. For this purpose, the isolation bearings should play their roles effectively to add flexibility and damping capability to railway bridge systems. It is also expected to come back to the original position after severe earthquake motion is over, to maintain the function of the train operation. To satisfy above mentioned requirements, accurate estimation of dynamic behavior of the seismically isolated bridge structures is necessary. Especially, complicated constraining force from the railway track to the bridges girder has to be accurately investigated and modeled. For this purpose, shake table tests of partial models of railway bridge structures are conducted subjected to different types and levels of earthquake ground motion. The direct measurement of the constraining force to the girder is almost impossible, so, in this study, it is detected from the equilibrium of dynamic motion of the system using displacement and acceleration data of the tests. The nonlinear and non-symmetric constraining force is found first time in this field. The numerical models are proposed based on the experimental results. The numerical simulation of the isolated bridge structures with the proposed models agrees with experimental results fairly well, suggesting that the proposed models can be used for structural design process for new construction and seismic retrofit of existing railway bridges.
机译:在实施地震隔离系统到铁路桥梁中,基本要求如下。首先是在偶尔地震下确保火车的运行安全性(1级)地面运动。为此目的,隔离轴承应几乎像固定的铰链一样工作,不允许大移位。第二代是保护桥墩免受罕见地震(2级)地面运动的严重损伤。为此目的,隔离轴承应有效地发挥作用,以增加铁路桥系统的灵活性和阻尼能力。在严重的地震运动结束后,它也预计将回到原来的位置,以维持火车操作的功能。为了满足上述要求,需要准确地估计地震隔离桥结构的动态行为。特别地,必须准确地研究来自铁路轨道到桥梁的复杂约束力钻头。为此目的,进行铁路桥结构部分模型的摇动台测试经受不同类型和地震地面运动水平。在梁的直接测量梁的直接测量几乎是不可能的,因此,在本研究中,使用测试的位移和加速数据的系统的动态运动平衡来检测。在该字段中首次找到非线性和非对称约束力。基于实验结果提出了数值模型。拟议模型的隔离桥结构的数值模拟同意实验结果非常好,这表明所提出的型号可用于结构设计过程,用于现有铁路桥的新建和地震改造。

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