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Aerodynamic Effects of Ravine Wind to Pantograph of High-speed Train Arriving at and Leaving a Tunnel

机译:山沟风的空气动力学效应高速列车到达并留下隧道的高速火车

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The process of an eight-car high speed train running through a canyon wind zone from a tunnel in the state of favorable pantograph (closing stomata) and adverse pantograph (opening stomata) was simulated by using the sliding mesh method, and the aerodynamic performance of the pantograph bow on the train was researched. The results show that when the train goes out of and enters the tunnel, the effect of cross wind on the change of the pantograph aerodynamic bow force is significant. The law of pantograph bow aerodynamic force peak with train speed and wind speed in the state of favorable pantograph is similar to the one in the state of adverse pantograph. The lift peak of the pantograph bow in the state of a favorable pantograph is a little larger than the one in the state of an adverse pantograph, and the difference of lateral force between them is little. Relative to the process of train entering into a tunnel, the pantograph bow lift pneumatic impact is worse when the train goes out of tunnel. When the wind speed is above 5m/s, the pantograph bow lift force peak process when the train is going out of the tunnel is larger than the one of the process when running from a canyon wind zone into a tunnel.
机译:通过使用滑动网格法模拟从良好的受电弓(封闭气孔)和不利遮挡仪(开口气孔)的隧道沿隧道运行的八车高速列车的过程,以及空气动力学性能火车上的受电弓弓的弓。结果表明,当火车超出并进入隧道时,交叉风对映对诱饵空气动力弓力变化的影响是显着的。受电弓弓空气动力峰值的定律峰值和风速在有利的受电弓的状态下类似于不利接触仪状态的一个。受电弓弓的升降峰在有利的受电弓的状态下比不良接触仪的状态大一点,并且它们之间的横向力差异很少。相对于火车进入隧道的过程,当火车出隧道时,受电机弓升起气动的冲击更糟糕。当风速高于5米/秒时,电压仪弓形升力力峰值过程当火车离开隧道时大于从峡谷风区域进入隧道时的过程。

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