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Gusts caused by high-speed trains in confined spaces and tunnels

机译:密闭空间和隧道中的高速列车引起的阵风

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Little is known of the behaviour of transient air velocities and dynamic pressure loads generated by high-speed trains in confined spaces, or whether current methodologies for assessing transient gust loads in open spaces can be used in confined spaces. Experiments have been carried out in which a moving-model high-speed train passed walls, a partially-enclosed tunnel, and single-track tunnels with a variety of cross-sectional areas and lengths. An open air control experiment has also been carried out. The train model was a simplified 1/25 scale four-carriage ICE2 train travelling at 32. m/s. Cobra Probes measured the three-dimensional air velocity components at various positions inside the structures. The results show that the peak gust magnitudes increase in all confined cases compared to the open air. In tunnels, a 'piston effect' appears to have been a dominant cause of the increases in the peak gust magnitudes, as well as prolonged winds occurring before and after the train passed the probes. The tunnel length impacted considerably on the flow characteristics, and the partially-enclosed tunnel showed further increases in the gusts due to high lateral and vertical velocities.
机译:对于密闭空间中的高速列车产生的瞬态空气速度和动压力载荷的行为知之甚少,或者在密闭空间中是否可以使用用于评估空旷空间中的瞬态阵风载荷的当前方法学,尚不清楚。已经进行了实验,其中,移动式高速列车通过壁,部分封闭的隧道和具有各种横截面面积和长度的单轨隧道。还进行了露天控制实验。火车模型是简化的1/25规模四车厢ICE2火车,运行速度为32. m / s。眼镜蛇探针在结构内部的各个位置测量了三维风速分量。结果表明,与露天相比,在所有密闭情况下,阵风的峰值都增加。在隧道中,“活塞效应”似乎是导致峰值阵风强度增加以及火车通过探管之前和之后长风的主要原因。隧道长度对流动​​特性有很大影响,由于高的横向和垂直速度,部分封闭的隧道阵风进一步增加。

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