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Numerical simulation on wind pressure transients in high speed train tunnels

机译:高速列车隧道风压瞬变数值模拟

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When a train passes through a tunnel with high speed, pressure waves are generated due to the entry of the front and the rear of the train respectively. These pressure waves are alternately propagated and reflected at the exit and entrance of the tunnel. Severe pressure transients cause the repeated fatigue load to the car-body and tunnel wall, ear-discomfort to passengers, and micro pressure wave to the surroundings of the tunnel exit. To clarify quantitative pressure change in the tunnel is very important for the optimal design of the tunnel size. Partial differential equations also can be converted into ordinary differential equations by using the method of characteristics. In this study, we have developed a simulation program to calculate pressure transients in a railroad tunnel. The method of characteristics based on a fixed mesh system is used to solve the governing equations. By using this program, we have predicted pressure transients in KTX (Korea Train eXpress)-tunnel and compared with experimental results that are obtained in Unju tunnel with KTX high speed trains. The results of calculation coincide with the ones of the Unju tunnel tests, and the pressure transient mechanism was made clear. To analyze the effects of train speed and blockage ratio, we have conducted parametric simulations. The results show that pressure rise in a tunnel is proportional to the square of train speed and to the blockage of train/tunnel cross sectional area.
机译:当火车高速通过隧道时,分别由于火车的前部和后部的进入而产生压力波。这些压力波在隧道的出口和入口交替传播和反射。严重的压力瞬变会给车身和隧道壁带来反复的疲劳载荷,给乘客带来耳部不适,并给隧道出口周围的环境带来微压波。弄清隧道中的定量压力变化对于隧道尺寸的最佳设计非常重要。偏微分方程也可以通过特征方法转换为常微分方程。在这项研究中,我们开发了一个模拟程序来计算铁路隧道中的压力瞬变。使用基于固定网格系统的特征方法来求解控制方程。通过使用该程序,我们预测了KTX(韩国Train eXpress)隧道中的压力瞬变,并与在使用KTX高速列车的Unju隧道中获得的实验结果进行了比较。计算结果与Unju隧道试验的结果吻合,并阐明了压力瞬变机理。为了分析列车速度和阻塞率的影响,我们进行了参数模拟。结果表明,隧道中的压力上升与列车速度的平方以及列车/隧道横截面积的阻塞成正比。

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