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Aerodynamic Simulation of the Air Flow beneath the High Speed Train

机译:高速列车下方气流的空气动力学模拟

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Numerical simulations were carried out to investigate the air flow and pressure distributions beneath high speed trains, based on the three-dimensional Reynolds-averaged Navier-Stokes equations with the SST k-ω two-equation turbulence model. The simulation scenarios were of the high speed train, the CRH2, running in the open air at four different speeds: 200 km/h, 250 km/h, 300 km/h and 350 km/h. The results show that, the highest area of pressure is located at the front underbody part of the train whist the pressure for rest of the train is relatively small. Increasing speed does not visibly increase the pressure coefficient, indicating that the pressure increases with the square of the operational speed.
机译:进行数值模拟,以研究高速列车下方的空气流量和压力分布,基于具有SSTK-ω两方程湍流模型的三维雷诺平均的Navier-Stokes方程。模拟方案是高速列车,CRH2,四种不同的速度在露天速度:200公里/小时,250公里/小时,300公里/小时和350 km / h。结果表明,最高压力面积位于前部的前部,列车休养系的压力相对较小。增加的速度不会显着增加压力系数,表明压力随着操作速度的平方而增加。

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