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Earthquake Influence on the Rail Irregularity on High-Speed Railway Bridge

机译:地震影响高速铁路桥梁的铁路逆脉

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摘要

Rail irregularity is the leading cause of enhancing train-track coupling vibration and, therefore, should be studied in detail for safety requirements. In this study, the differences between existing rail irregularities without being subjected to an earthquake between different countries were first studied. Results show that existing power spectrum density and time-domain displacement samples of rail irregularities in the American code are the largest, while the irregularities of the Germany railway are higher than those of China in a specific range of rail wavelengths. Afterward, the effects of earthquake intensity, soil site, and duration on the rail irregularity of a Chinese typical high-speed railway bridge were investigated. For this purpose, a finite element model was established and validated by the shaking table test of a 1/12-scaled high-speed railway bridge experimental specimen. The calculation results indicated that the influences of earthquakes on the rail alignment irregularity were evident.
机译:轨道不规则是提高火车轨道耦合振动的主要原因,因此应详细研究安全要求。在这项研究中,首先研究了在不受不同国家之间发生地震的现有铁路违规之间的差异。结果表明,美国法典中现有的功率谱密度和时域位移样本最大,德国铁路的不规则高于中国的轨道波长范围的违规行为。之后,研究了地震强度,土壤部位和持续时间在中国典型的高速铁路桥梁轨道不规则上的影响。为此目的,由1/12缩放的高速铁路桥实验标本的振动台测试建立和验证了有限元模型。计算结果表明,地震对轨道对准不规则性的影响是显而易见的。

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