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首页> 外文期刊>Advances in Structural Engineering >The Effects of Side Branches on Compression Waves Propagating in High-Speed Railway Tunnels
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The Effects of Side Branches on Compression Waves Propagating in High-Speed Railway Tunnels

机译:侧支对高速铁路隧道内压缩波传播的影响

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摘要

According to the theory of finite amplitude sound waves, a one-dimensional compressible unsteady non-homentropic flow model, and the method of characteristics based on the average parameter method are applied to calculate the propagation of entry compression waves in a tunnel, in which the strength of the entry compression wave mainly affects the magnitude of the micro-pressure wave. In addition, acoustical principles are used to simulate the effect of side branches in the tunnel on the sound wave to elucidate the distortion of the waveform of the compression wave. A real-world comparison shows that the programs presented correctly reveal the distortion of the compression wave in the tunnel. After validation, the effects of the number, location, and depth of the side branches are studied in detail. The results show that any change in the parameters of a single side branch has almost no effect on the distortion of the waveform of the compression wave. An increase in the number of side branches, however, does make their effect more significant. This is due to an increase in streaming and reflections which substantially reduce the pressure gradient of the compression wave arriving at the exit portal of the tunnel.
机译:根据有限振幅声波理论,应用一维可压缩非定常非同质流模型和基于平均参数方法的特征方法,计算入口压缩波在隧道中的传播,其中进入压缩波的强度主要影响微压波的大小。另外,使用声学原理来模拟隧道中的侧分支对声波的影响,以阐明压缩波波形的失真。实际比较表明,所显示的程序正确显示了隧道中压缩波的变形。验证后,将详细研究侧分支的数量,位置和深度的影响。结果表明,单个支路参数的任何变化几乎都不会影响压缩波波形的失真。但是,侧枝数量的增加确实使其效果更加显着。这是由于流和反射的增加,这大大减小了到达隧道出口的压缩波的压力梯度。

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