高速磁浮列车过隧道诱导的隧道出口列车风研究

Slipstream at the tunnel exit induced by a high-speed maglev train passing through a tunnel

  • 摘要: 高速磁浮列车进入隧道时,产生的压缩波会在隧道出口诱导气流形成伴随速度。以高速磁浮列车为研究对象,采用三维、可压缩、非定常的计算方法对不同列车运行速度和隧道阻塞比下列车通过隧道的过程进行了计算,分析了隧道出口附近压缩波诱导的列车风特性,给出了列车运行速度和隧道阻塞比对列车风速度的影响规律。结果表明:隧道出口内,压缩波诱导形成的列车风速度变化趋势与峰值在纵向(列车运行方向)上基本保持不变;隧道出口外,列车风峰值速度在纵向25 m范围内逐渐降低,在横向(垂直于列车运行方向)5 m范围内基本保持不变;随着列车运行速度和隧道阻塞比增大,隧道出口内外的列车风峰值速度均明显增大,列车运行速度600 km/h、隧道阻塞比17.04%时,隧道出口外轨道中心线上纵向5 m处列车风峰值速度高达56 m/s。本文结论可为铁路隧道列车风防护及高速磁浮列车安全运行提供参考。

     

    Abstract: When the high-speed maglev train enters a tunnel, a compression wave generated by it will induce the air flow at the exit of the tunnel to form an adjoint velocity. The three-dimensional, compressible, unsteady calculation method is used to simulate the process of the high-speed maglev train passing through a tunnel with different blocking ratios under different speeds. The features of the slipstream around the tunnel exit induced by the compression wave are analyzed, and the influence of the train speed and blocking ratio on the slipstream is ascertained. The results show that at the tunnel exit, the trend and the peak speeds of the slipstream induced by the compression wave have no apparent change in the direction of the train’s movement; the peak wind speed of the measuring point outside the tunnel exit gradually decreases in the longitudinal range of 25 m, and basically remains unchanged in the transverse range of 5 m. With the vehicle speed and blocking ratio increasing, the peak wind speeds inside and outside the outlet are raised obviously. When the train speed is 600 km/h and the blocking ratio is 17.04%, the maximum wind speed at 5 m outside the tunnel is up to 56 m/s. This conclusion is helpful to strengthen people's understanding about the harm of the slipstream induced by a train passing through a tunnel, and to provide references for protection against the slipstream in the railway tunnel and the safe operation of maglev train in the future.

     

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