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Design and optimization of tunnel hoods

机译:隧道盖的设计与优化

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An obvious pressure change and a micro-pressure wave are generated when a train enters a tunnel at high-speed, which impacts on the comfort of passengers and the environment around the tunnel. Thus, it is necessary to study the aerodynamics of tunnels in order to reduce the pressure change and micro-pressure wave. Our laboratory owns an advanced moving-model device that can simulate two trains crossing in the open air or trains entering a tunnel, with a maximum speed of 400 km/h. This paper studies the pressure change, the micro-pressure wave and a series of hoods using three-dimensional numerical simulations and moving-model experiments. From a comparative study, we obtain rules governing the influence of hoods on the micro-pressure wave, and reasonable shapes and parameters of hoods are designed.
机译:火车高速进入隧道时,会产生明显的压力变化和微压力波,影响乘客的舒适度和隧道周围的环境。因此,有必要研究隧道的空气动力学,以减少压力变化和微压力波。我们的实验室拥有先进的运动模型设备,该设备可以模拟两列露天列车或进入隧道的列车,最高速度为400 km / h。本文利用三维数值模拟和运动模型实验研究了压力变化,微压力波和一系列发动机罩。通过比较研究,我们得出了控制罩对微压力波影响的规则,并设计了合理的罩形状和参数。

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