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Dynamic analysis of coupled train - ladder track - elevated bridge system

机译:列车-阶梯轨道-高架桥耦合系统动力分析。

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摘要

As a new type of vibration reduction, the ladder track system has been successfully used in engineering. In this paper, a numerical model of the train-track-viaduct system is established to study the dynamic responses of an elevated bridge with ladder track. The system is composed of a vehicle submodel, a track submodel and a bridge submodel, with the measured track irregularities as the system self-excitation. The whole time histories of a train running through an elevated bridge with 3×27m continuous PC box girders are simulated. The dynamic responses of the bridge such as deflections, lateral and vertical accelerations, and the vehicle responses such as derailment factors, offload factors and car-body accelerations are calculated. The calculated results are partly validated through the comparison with the experimental data. Compared to the common slab track, adapting the ladder sleeper can effectively reduce the accelerations of the bridge girder, and also reduce the car-body accelerations and offload factors of the train vehicle
机译:作为一种新型的减振技术,梯形履带系统已成功应用于工程中。本文建立了列车-高架桥系统的数值模型,以研究高架梯形桥的动力响应。该系统由车辆子模型,轨道子模型和桥梁子模型组成,并将测得的轨道不规则性作为系统自激。模拟了列车通过3×27m连续PC箱形梁的高架桥的整个时间历史。计算桥梁的动态响应(例如挠度,横向和垂直加速度)以及车辆响应(例如出轨因子,卸载因子和车身加速度)。通过与实验数据进行比较,部分验证了计算结果。与普通平板轨道相比,采用梯形轨枕可以有效降低桥梁的加速度,还可以降低列车车体的加速度和卸载系数。

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