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High-speed train overturning safety under varying wind speed conditions

机译:高速列车在不同风速条件下推翻安全性

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摘要

Given that the operation speeds of high-speed trains are rising constantly and considering the lightweight body technology that is being applied widely, vehicle systems have become much more sensitive to external excitation. When a train passes through a wind zone railway, for example, it often encounters an abrupt wind speed change phenomenon caused by the surrounding wind being affected by the local terrain. Such a phenomenon makes it more difficult to ensure train safety and commuter comfort. However, few studies have focused on the effect of changing wind speeds on a train's operational safety. In this study, we developed a crosswind model on the basis of measured wind speed curves and investigated the effects of a single wind speed change and continuous wind speed changes on train dynamics. In addition, we also considered the influence of the rate of wind speed changes, the duration of the maximum wind speed, and changes in wind speed with different amplitudes. By considering the most critical wind speed changing conditions and by setting the overturning coefficient as the safety limit, we obtained the critical overturning wind speed under changing wind speed conditions. As a consequence, we suggested the process for estimating a wind speed interval for safe train operation under abruptly changing wind speed conditions.
机译:鉴于高速列车的运行速度不断上升,考虑广泛应用的轻质车身技术,车辆系统对外部励磁变得更加敏感。例如,当火车通过风带铁路时,它经常遇到由局部地形影响的周围风引起的突然风速变化现象。这种现象使得确保火车安全和通勤舒适性更加困难。然而,很少有研究专注于改变风速对火车操作安全性的影响。在这项研究中,我们在测量的风速曲线的基础上开发了一个横向模型,并研究了单个风速变化和训练动态的连续风速变化的影响。此外,我们还考虑了风速变化的影响,最大风速的持续时间,以及用不同幅度的风速变化。通过考虑最关键的风速变化条件,并通过将翻转系数设置为安全极限,我们在变化风速条件下获得了临界倾覆的风速。因此,我们建议在突然改变风速条件下估算安全列车操作的风速间隔的过程。

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