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DYNAMIC RESPONSES OF LONG SPAN CONTINUOUS STEEL TRUSS ARCH BRIDGE UNDER RUNNING HIGH-SPEED TRAIN

机译:运行高速列车下长跨度连续钢桁架拱桥动态响应

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A dynamic analysis model of train-bridge system subjected to cross winds is established in this paper. The dynamic interaction model of the train-bridge system is established. The wind excitations of the bridge are static, buffeting and self-excited forces, while the wind loads on the train vehicles are static and buffeting forces, in which the self-exciting force is neglected. The wind load and the track irregularities are taken as the system excitations. The framework is then applied to the main bridge of Nanjing Yangtze-River Bridge which is 6-span continuous steel truss arch bridge with 108+192+336+336+192+108m span. The dynamic responses of the bridge and the vehicles in cross winds are calculated. The influences of train speed and wind velocities on the dynamic responses of the train-bridge system are studied. The critical trains speeds are proposed for running safety on high-speed railway bridges in cross winds with different mean wind velocities.
机译:本文建立了经受交叉风的火车桥系统动态分析模型。建立了火车桥系统的动态交互模型。桥梁的风激发是静态的,自动的和自我激发力,而火车车辆上的风荷载是静态和抖动力,其中忽略了自我激动力。风负荷和轨道不规则是作为系统激励的。然后将该框架应用于南京长江桥的主桥,是6跨连续钢桁架拱桥,108 + 192 + 336 + 336 + 192 + 108米跨度。计算桥梁的动态响应和跨风中的车辆。研究了列车速度和风速对火车桥系统的动态响应的影响。提出了临界火车速度,用于在具有不同平均风速的交叉风中的高速铁路桥上运行安全。

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