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Field measurements of aerodynamic pressures in tunnels induced by high speed trains

机译:高速列车在隧道内产生的空气动力压力的现场测量

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摘要

The passage of high speed trains causes aerodynamic effects in tunnels, and considerable pressure transients are generated because of the restricted airspace within the tunnel. This leads to passenger discomfort, noise surrounding the tunnel, resistance to train movement, and possible damage to the train body and tunnel facilities. For the real assessment of the aerodynamic pressures in the tunnel induced by the passing trains of the high speed rail in Taiwan, a series of field measurements were performed near the portal and the shaft or the adit of the tunnel during normal operation. The measurements were conducted for several train speeds, including the maximum operation speed of the high speed rail in Taiwan, which is 300. km/h. Pressure sensors were deployed along the tunnel to investigate the propagation of pressure waves. The results show that the train nose entry/exit generated a compression wave propagating throughout the tunnel, resulting in a sharp increase in pressure. Conversely, the train tail entry/exit generated an expansion wave causing a pressure drop. The successive reflections of these pressure waves between both ends of the tunnel were observed. The pass-by of a train inside the tunnel also induced an immediate local pressure drop due to aerodynamic drag. Based on the measurement results, the spatial variation of the train-induced pressure peaks inside the tunnel is discussed. Furthermore, the relationship between the pressure peaks and the train speed is established, and the influence of the cross-sectional area of the tunnel is also presented.
机译:高速列车的通过会在隧道中产生空气动力效应,并且由于隧道内的空域有限,会产生相当大的压力瞬变。这会导致乘客不舒适,隧道周围的噪音,火车运动的阻力以及对火车主体和隧道设施的可能损坏。为了真实评估台湾高铁列车经过时在隧道中产生的空气动力压力,在正常运行期间在隧道的入口和竖井或通道入口附近进行了一系列现场测量。测量是针对几种火车速度进行的,包括台湾高铁的最高运行速度300. km / h。沿隧道部署了压力传感器,以研究压力波的传播。结果表明,火车头的进/出口产生了在整个隧道中传播的压缩波,从而导致压力急剧增加。相反,火车尾部的进/出产生了引起压力下降的膨胀波。在隧道的两端之间观察到这些压力波的连续反射。隧道内火车的通过也由于空气动力阻力而引起立即的局部压力下降。根据测量结果,讨论了隧道内压力引起的压力峰值的空间变化。此外,建立了压力峰值与列车速度之间的关系,并提出了隧道横截面积的影响。

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