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Research on the Influence of Vacuum Pipe Blocking Ratio on the Aerodynamic Characteristics of Super High Speed Train

机译:真空管阻塞比对超高速列车空气动力学特性的影响研究

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Based on the three-dimensional viscous, steady, incompressible NS equation and the standard k-ε two-equation turbulence model, this paper establishes a three-dimensional static fluid calculation model for the vacuum pipeline ultra-high-speed train, and the flow field analysis software ANASYS/Fluent was used to simulate the aerodynamic performance of the vacuum piping system under different operating speeds, pipe block ratios and pipe pressure conditions. The calculation results show that when the pipeline pressure and the operating speed is constant, the larger the blocking ratio is, the greater the aerodynamic resistance experienced by the train, the greater the blockage ratio of the vacuum pipeline, the more drastic the change in the aerodynamic resistance of the car body; When the train runs under the same pipeline blocking ratio, the aerodynamic resistance experienced by the train increases with the increase of running speed and pipeline pressure.
机译:基于三维粘性,稳态,不可压缩的NS方程和标准K-ε两方程湍流模型,为真空管道超高速列车和流量建立了三维静态流体计算模型 现场分析软件Anasys / Fluent用于模拟在不同的操作速度,管道块比和管道压力条件下的真空管道系统的空气动力学性能。 计算结果表明,当管道压力和操作速度是恒定的时,阻塞比越大,火车的空气动力学耐受性越大,真空管道的堵塞比越大,变化越多 车身的空气动力学抵抗力; 当火车在相同的管道阻塞比下运行时,列车经历的空气动力学阻力随着运行速度和管道压力的增加而增加。

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