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Numerical studies on the radiation of train-tunnel impulse waves

机译:列车隧道脉冲波辐射的数值研究

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An impulse wave is always discharged from the exit of a train tunnel when a weak compression wave induced by a moving high-speed train at the tunnel entrance propagates outside of the tunnel exit. An impulse wave is a micro-pressure wave, which leads to environment problems such as noise, vibration and other structural damages in the vicinity of the tunnel exit. Currently, due to the development of the optimization and acceleration systems of the high-speed train, the train speed becomes much higher than before and environmental problems become more serious as well. Therefore, it is significantly important to find effective methods to control and reduce magnitudes of impulse waves discharged from the tunnel exit. In the present study, numerical simulations were carried out to investigate the generation and propagation of impulse waves discharged from the exit of a model tunnel. Weak compression waves with different pressure gradients were assumed at the tunnel entry for investigating the relationship between the compression wave and the impulse wave radiated from the tunnel exit. Several tunnel exit geometries with and without a flange at the exit portal of the tunnel were simulated to check their effects on the radiation of impulse waves. Coefficient of effective radiation solid angle indicating the effects of the surrounding environment near the tunnel exit was discussed in-depth. The comparison was made in terms of the magnitudes of impulse waves and coefficients of effective radiation solid angle at different boundary conditions.
机译:当在隧道入口处行驶的高速列车引起的弱压缩波传播到隧道出口之外时,脉冲波总是从火车隧道的出口释放出来。脉冲波是微压力波,会导致环境问题,例如隧道出口附近的噪音,振动和其他结构破坏。当前,由于高速火车的优化和加速系统的发展,火车速度变得比以前高得多,并且环境问题也变得更加严重。因此,找到有效的方法来控制和减小从隧道出口排出的冲击波的幅度非常重要。在本研究中,进行了数值模拟以研究从模型隧道出口释放的脉冲波的产生和传播。假设在隧道入口处有不同压力梯度的弱压缩波,以研究压缩波与从隧道出口辐射的脉冲波之间的关系。模拟了几个在隧道出口处有无法兰的隧道出口几何形状,以检查它们对脉冲波辐射的影响。深入讨论了指示隧道出口附近周围环境影响的有效辐射立体角系数。根据脉冲波的大小和不同边界条件下的有效辐射立体角的系数进行了比较。

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