首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Influence of the geometry of equal-transect oblique tunnel portal on compression wave and micro-pressure wave generated by high-speed trains entering tunnels
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Influence of the geometry of equal-transect oblique tunnel portal on compression wave and micro-pressure wave generated by high-speed trains entering tunnels

机译:相等横断倾斜隧道门户对高速列车进入隧道产生压缩波和微压波的影响

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摘要

Pressure gradient and micro-pressure wave induced by a high-speed train entering a tunnel were investigated for the parametric design of equal-transect oblique tunnel portal. A moving model experimental test was conducted to verify the computational method and mesh. The influence of three main factors (portal shape, slope value, and aperture ratio) of the equal-transect oblique tunnel portal were considered in this study. The results showed that the hat oblique shape was the most efficient portal design to alleviate the pressure gradient and micro-pressure wave compared to the other designs examined in this study, and the mitigation mechanism of the hat oblique design on the initial compression wave was explained. Then the effects of the slope value and the aperture ratio of hat oblique tunnel portal on the pressure gradient and micro-pressure wave were investigated, and the parameters of the equal-transect oblique tunnel portal were optimized to alleviate the pressure gradient and micro-pressure wave induced by high-speed trains entering tunnels.
机译:通过进入隧道进入隧道的高速列车引起的压力梯度和微压波,用于平等横断倾斜隧道门户的参数设计。进行了运动模型实验测试以验证计算方法和网格。本研究考虑了三个主要因素(门户形状,坡度和孔径)的影响的影响。结果表明,与本研究中检查的其他设计相比,帽子倾斜形状是最有效的门户设计,以缓解压力梯度和微压波,并解释了帽子倾斜设计对初始压缩波上的缓解机制。然后研究了斜坡值和帽子倾斜隧道门户孔径比在压力梯度和微压波上的效果,并且优化了相等横断倾斜隧道门户的参数,以减轻压力梯度和微压力由高速列车引起的波浪进入隧道。

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