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Nature of pressure waves induced by a high-speed train travelling through a tunnel

机译:高速列车通过隧道引起的压力波的性质

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摘要

The pressure waves generated by a train entering and running through a tunnel are studied experimentally and numerically with the aim of gaining a solid understanding of the flow in the standard tunnel geometry and in the configuration with airshafts along the tunnel surface. Laboratory experiments were conducted in a scaled facility where train models travelled at a maximum velocity of about 150 km/h through a 6-m-long tunnel. The flow was simulated by a one-dimensional numerical code modified to include the effect of the separation bubble forming near the train head. The numerical simulations reproduced well the experimental results. We tested the influence of the train cross-sectional shape and length on the compression wave produced by the vehicle entering the confined area. The cross-sectional shape was not found to be influential as long as the blockage ratio, namely the ratio between the train and tunnel cross-sectional areas, is constant. The pressure waves are one-dimensional sufficiently downwind of the tunnel mouth, which validates the comparison between the experimental and computational results. It is further shown that the numerical code can satisfactorily reproduce the pressure variations for the case with airshaft apertures along the tunnel surface.
机译:通过实验和数值研究了火车进入并通过隧道所产生的压力波,目的是对标准隧道几何形状以及沿隧道表面带有空气轴的构造中的流量有一个扎实的了解。在规模化的设施中进行实验室实验,在该设施中,火车模型以约150 km / h的最大速度穿越6米长的隧道。通过修改后的一维数字代码模拟流动,以包括在火车头附近形成分离气泡的影响。数值模拟很好地再现了实验结果。我们测试了火车的横截面形状和长度对车辆进入密闭区域产生的压缩波的影响。只要阻塞率,即火车和隧道横截面积之间的比率恒定,就不会发现横截面形状有影响。压力波是隧道口顺风方向的一维,这验证了实验结果与计算结果之间的比较。进一步示出,对于沿通道表面具有空气轴孔的情况,数字代码可以令人满意地再现压力变化。

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