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Vehicle-bridge Coupling Vibration Reduction Analysis for Long Span Highway and Railway Bi-purpose Cable-stayed Bridge

机译:长跨度高速公路和铁路双用途斜拉桥的车桥耦合减振分析

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The vehicle and TMD were modeled as a combination of several rigid bodies, which were connected together by a series of springs and dampers, the bridge was modeled by beam elements, and thus the spatial vibration equation of the system of TMD, vehicle and bridge was established, which was solved by direct integral method. A highway and railway bi-purpose cable-stayed bridge was taken as an example, the spatial vibration responses were calculated when the train and car run through the bridge, and the influence of TMD on the vibration response was discussed. The results show that the bridge has the sufficient lateral and vertical stiffness, the train and car affect each other when they cross the bridge at the same time, and TMD can play a good role in controlling the vibration response of long span cable-stayed bridge-train-car coupling system.
机译:车辆和TMD被建模为几个刚体的组合,该刚体通过一系列弹簧和阻尼器连接在一起,通过梁元件建模桥,因此TMD,车辆和桥系统的空间振动方程是 建立,通过直接整体方法解决。 采用公路和铁路双用途电缆留钢桥作为示例,计算出火车和车横穿桥时的空间振动响应,并讨论了TMD对振动响应的影响。 结果表明,该桥具有足够的横向和垂直刚度,火车和汽车在同时交叉桥时彼此影响,而TMD可以在控制长跨度斜拉桥的振动响应方面发挥良好作用 - 汽车耦合系统。

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