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Numerical and experimental investigation into the mid- and high-frequency vibration behavior of a concrete box girder bridge induced by high-speed trains

机译:高速列车诱导混凝土箱梁桥中高频振动行为的数值实验研究

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Concrete box girder bridges exhibit mid- and high-frequency ( 20 Hz) dynamic responses due to train excitations, which result in problems of noise radiation and track deterioration. This study presents a numerical model for box girder vibration prediction. Significant attention is focused on the mid- and high-frequency responses via introduction of a detailed track/bridge subsystem model. A hammer impact test was used to determine the model parameters. The model was then validated using a homologation test. The results show that the wheel/rail force and box girder mobility are the two principal factors that influence box girder vibration spectral characteristics and amplitudes. The box girder responses at cross-sections with similar dynamic characteristics vary little, as they increase moderately with the train speed. The application of a fastening system with low stiffness and high damping can effectively reduce box girder vibration. However, the elastic modulus and damping of the cement-asphalt mortar, and the thickness of the track slab and bearing base exert the smallest influences on the vibrations. The box girder slab thickness should be designed appropriately because its dynamic behavior is closely associated with the slab characteristics.
机译:混凝土箱梁桥展示展出的高频(& 20 Hz)动态响应,由于火车激发,导致噪声辐射和轨道劣化的问题。本研究提出了箱梁振动预测的数值模型。通过引入详细的轨道/桥接子系统模型,重点关注中高频率响应。锤击冲击试验用于确定模型参数。然后使用同源测试验证该模型。结果表明,车轮/轨力和箱梁移动性是影响箱梁振动谱特性和幅度的两个主要因素。盒子梁在具有类似动态特性的横截面的响应很小,因为它们以列车速度适度地增加。具有低刚度和高阻尼的紧固系统的应用可以有效地降低箱梁振动。然而,水泥 - 沥青砂浆的弹性模量和阻尼,以及轨道板坯和轴承基座的厚度对振动产生最小影响。箱梁板坯厚度应适当地设计,因为其动态行为与板坯特性密切相关。

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