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Impacts of wind shielding effects of bridge tower on railway vehicle running performance

机译:塔桥挡风效果对铁路车辆运行性能的影响

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When railway vehicles run by towers of long span bridges, the railway vehicles might experience a sudden load-off and load-on phenomenon in crosswind conditions. To ensure the running safety of the railway vehicles and the running comfort of the passengers, some studies were carried out to investigate the impacts of sudden changes of aerodynamic loads on moving railway vehicles. In the present study, the aerodynamic coefficients which were measured in wind tunnel tests using a moving train model are converted into the aerodynamic coefficients in the actual scale. The three-component aerodynamic loads are calculated based on the aerodynamic coefficients with consideration of the vehicle movement. A three-dimensional railway vehicle model is set up using the multibody dynamic theory, and the aerodynamic loads are treated as the inputs of excitation varied with time for kinetic simulations of the railway vehicle. Thus the dynamic responses of the railway vehicle passing by the bridge tower can be obtained from the kinetic simulations in the time domain The effects of the mean wind speeds and the rail track positions on the running performance of the railway vehicle are discussed. The three-component aerodynamic loads on the railway vehicle are found to experience significant sudden changes when the vehicle passes by the bridge tower. Correspondingly, such sudden changes of aerodynamic loads have a large impact on the dynamic performance of the running railway vehicle. The dynamic responses of the railway vehicle have great fluctuations and significant sudden changes, which is adverse to the running safety and comfort of the railway vehicle passing by the bridge tower in crosswind conditions.
机译:当铁路车辆由大跨度的桥塔运行时,在侧风条件下,铁路车辆可能会突然出现卸荷现象。为了确保铁路车辆的行驶安全和乘客的乘坐舒适性,进行了一些研究,以研究空气动力负荷的突然变化对行驶中的铁路车辆的影响。在本研究中,使用风车模型在风洞测试中测量的空气动力学系数被转换为实际比例的空气动力学系数。基于空气动力学系数并考虑车辆运动来计算三分量空气动力学负荷。利用多体动力学理论建立了三维铁路车辆模型,并将空气动力学载荷作为随时间变化的激励输入,用于铁路车辆的动力学仿真。因此,可以通过时域中的动力学模拟获得经过桥塔的铁路车辆的动力响应。讨论了平均风速和轨道位置对铁路车辆运行性能的影响。当车辆经过桥塔时,发现铁路车辆上的三分量空气动力负载会经历明显的突然变化。相应地,空气动力负载的这种突然变化对正在运行的铁路车辆的动力性能具有很大的影响。铁路车辆的动力响应具有较大的波动和明显的突变,这不利于在侧风条件下经过桥塔的铁路车辆的行驶安全性和舒适性。

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