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Numerical calculation of boundary layers and wake characteristics of high-speed trains with different lengths

机译:不同长度高速列车边界层和尾流特性的数值计算

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摘要

Trains with different numbers of cars running in the open air were simulated using the delayed detached-eddy simulation (DDES). The numbers of cars included in the simulation are 3, 4, 5 and 8. The aim of this study was to investigate how train length influences the boundary layer, the wake flow, the surface pressure, the aerodynamic drag and the friction drag. To certify the accuracy of the mesh and methods, the drag coefficients from numerical simulation of trains with 3 cars were compared with those from the wind tunnel test, and agreement was obtained. The results show that the boundary layer is thicker and the wake vortices are less symmetric as the train length increases. As a result, train length greatly affects pressure. The upper surface pressure of the tail car reduced by 2.9%, the side surface pressure of the tail car reduced by 8.3% and the underneath surface pressure of the tail car reduced by 19.7% in trains that included 3 cars to those including 8 cars. In addition, train length also has a significant effect on the friction drag coefficient and the drag coefficient. The friction drag coefficient of each car in a configuration decreases along the length of the train. In a comparison between trains consisting of 3 cars to those consisting of 8 cars, the friction drag coefficient of the tail car reduced by 8.6% and the drag coefficient of the tail car reduced by 3.7%.
机译:使用延迟的分离涡流仿真(DDES)对具有不同轿厢数量的露天列车进行了仿真。模拟中包括的轿厢数量分别为3、4、5和8。该研究的目的是研究列车长度如何影响边界层,尾流,表面压力,空气阻力和摩擦阻力。为了验证网格和方法的准确性,将3辆车的列车数值模拟中的阻力系数与风洞试验中的阻力系数进行了比较,并取得了一致。结果表明,随着列车长度的增加,边界层变厚,尾流涡流的对称性降低。结果,列车长度极大地影响了压力。在包括3辆车到8辆车的火车中,尾车的上表面压力降低了2.9%,尾车的侧表面压力降低了8.3%,尾车的底面压力降低了19.7%。此外,列车长度对摩擦阻力系数和阻力系数也有重要影响。在构造中,每个轿厢的摩擦阻力系数沿着火车的长度减小。在由三节车厢组成的火车与八节车厢组成的火车的比较中,尾车的摩擦阻力系数减小了8.6%,尾车的阻力系数减小了3.7%。

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