预应力钢丝对高速铁路简支梁车桥耦合振动影响的数值分析

D. Chen, Yanchang Wan, Shizhan Xu, Zheng Li, Yilin Fang
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引用次数: 0

摘要

运用铁路车桥耦合振动分析理论,建立了列车-轨道-桥梁-钢丝耦合系统的空间动力分析模型。并根据列车-轨道-桥梁-钢丝耦合振动分析方法编制了相应的程序。以高速铁路某32m简支梁为研究对象,分析了有效预应力、钢丝偏心和车速对车桥耦合振动动力响应的影响。结果表明,预应力钢丝对桥梁动力响应有显著影响。随着预应力的增大,跨中竖向动力响应峰值先减小后增大。预应力为1300 MPa时出现最小峰值。当钢丝相对于设计位置向下偏转时,桥梁的垂直位移比向下偏转时减小的幅度更大。列车以300 km/h速度行驶时,桥梁横向动力响应和列车车身加速度响应均出现极值。预应力钢丝对桥、车体横向动力响应影响不大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Analysis of the Influence of Prestressed Steel Wires on Vehicle-Bridge Coupling Vibration of Simply Supported Beams on High-Speed Railway
By the theory of vehicle-bridge coupled vibration analysis in railways, the dynamic analysis model for space of the train-track-bridge-steel wires coupled system was established. Moreover, a corresponding program was compiled based on the train-track-bridge-steel wires coupling vibration analysis method. Taking a 32 m simple beam which is in high-speed railways as the subject of study, the influence of effective prestress, steel wires eccentricity and vehicle speed on the dynamic response of the vehicle-bridge coupled vibration was analysed. The results show that the bridge dynamic response is remarkably influenced by prestressed steel wires. With the prestress increasing, the crest of the vertical dynamic response at the midspan decreased first, then increased. Moreover, the minimum peak value appeared when the prestress was 1300 MPa. When the steel wires were deflected downward relative to the design position, the vertical displacement of the bridge decreased by more than when the downshift occurred. The extreme values of the bridge lateral dynamic response and the train body acceleration response appeared when the train ran at 300 km/h. Prestressed steel wires had little effect on the dynamic response in the transverse direction of the bridge and train body.
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