首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Numerical study of snow accumulation on the bogies of a high-speed train using URANS coupled with discrete phase model
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Numerical study of snow accumulation on the bogies of a high-speed train using URANS coupled with discrete phase model

机译:采用离散相位模型耦合的高速列车转向架上积雪积累的数值研究

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摘要

The snow accumulation on bogies of a three-car grouping high-speed train has been investigated using unsteady Reynolds-Averaged Navier-Stokes simulations (URANS) coupled with Discrete Phase Model (DPM). The accuracy of mesh resolution and methodology of computational fluid dynamics (CFD) are validated against experimental results. The characteristics of flow fields around bogie regions, the snow particles' motion and snow accumulation are analysed herein. Also the computational costs of numerical simulations using URANS and detached eddy simulation (DES) in the present study are compared. The results show that snow particles begin to flow out from the high-speed train bottom as they come to the first bogie region. After that they whirl around, forming a wind snow flow in the wake region. Bogie 2 experiences the most snow accumulation. Subsequently, the snow covering on the bogie regions decreases along the train length. A comparison of snow accumulation between URANS and DES methods is made, showing the URANS is sufficient to predict this snow accumulation, which only takes up 2/3 computational cost of the DES. The geometry model consisting of a leading vehicle and a 1/3 s vehicle is recommended to investigate the snow accumulation issue on the bogies of the train.
机译:使用不稳定的Reynolds-Iveriged Navier-Stokes模拟(URAN)与离散相位模型(DPM)进行了三辆车分组高速列车的转向架上的积雪。对计算流体动力学(CFD)的网格分辨率和方法的准确性验证了实验结果。本文分析了转向架区域周围的流场的特点,在此处分析了雪粒子的运动和积雪。此外,比较了使用uran铀和分离涡模拟(DES)的数值模拟的计算成本。结果表明,随着雪粒子开始从高速列车底部流出,因为它们进入第一个转向架区域。之后,它们旋转,在唤醒区域形成风雪流动。转向架2体验最大的积雪。随后,在转向架区域上的雪覆盖沿着火车长度减少。制造铀和DES方法之间的积雪积累的比较,显示铀足以预测这种积雪,这仅占DES的2/3计算成本。建议由领先的车辆和1/3 S车辆组成的几何模型来调查火车的重构上的积雪问题。

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