首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >An improved delayed detached eddy simulation study of the bogie cavity length effects on the aerodynamic performance of a high-speed train
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An improved delayed detached eddy simulation study of the bogie cavity length effects on the aerodynamic performance of a high-speed train

机译:改进的延迟分离涡流模拟研究对高速列车空气动力学性能的转向架腔长度效应

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This paper uses an improved delayed detached eddy simulation method to investigate the unsteady flow features of the high-speed trains with various cavity lengths at Re = 1.85x10(6). The improved delayed detached eddy simulation results are validated against the experimental data obtained during previous wind tunnel tests. The effects of cavity length on the resistance force, flow structures beneath the high-speed train and in the wake are analyzed. The results show that a longer cavity significantly increases the streamwise velocity level near the rear plates and forms a stronger impinging flow on the rear plates, and thus contributes to a higher value of resistance. Furthermore, a longer cavity decreases the pressure coefficients around the near wake region from the top of the ballast to the tail nose in the vertical direction and thereby increases the pressure drag of the high-speed train. Additionally, a longer bogie cavity is found to increase the longitudinal vortex scales in the near wake region. All these changes on the flow field bring to 5.8% and 11.5% drag increase when the bogie cavities are elongated by 20% and 40%, respectively, of the wheelbase.
机译:本文采用改进的延迟分离涡流模拟方法来研究高速列车的不稳定流特征,在RE = 1.85x10(6)处具有各种腔体长度。改进的延迟分离涡流仿真结果针对先前风隧道试验期间获得的实验数据验证。分析了腔长对电阻力,高速列车下方的流动结构的影响。结果表明,较长的腔显着增加了后板附近的流动速度水平,并在后板上形成更强的撞击流动,从而有助于较高的电阻值。此外,更长的腔在垂直方向上从镇流器的顶部到尾部围绕近唤醒区域周围的压力系数减小,从而增加高速列车的压力阻力。另外,发现更长的转向架腔以增加靠近唤醒区域中的纵向涡旋尺度。当转向架腔分别伸长20%和40%的轴距时,流场对流场的所有这些变化带来了5.8%和11.5%。

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